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Selected publications

2020

Sushma Kumari, Gregor Lang, Elise DeSimone, Christian Spengler, Vanessa T. Trossmann, Susanne Lücker, Martina Hudel, Karin Jacobs, Norbert Krämer, Thomas Scheibel: Engineered spider silk-based 2D and 3D materials prevent microbial infestation. In: Materials Today, (2020). - .
doi:10.1016/j.mattod.2020.06.009

Sushma Kumari, Gregor Lang, Elise DeSimone, Christian Spengler, Vanessa T. Trossmann, Susanne Lücker, Martina Hudel, Karin Jacobs, Norbert Krämer, Thomas Scheibel: Data for microbe resistant engineered recombinant spider silk protein based 2D and 3D materials. In: Data in Brief, 32 (2020). - .
doi:10.1016/j.dib.2020.106305

Charlotte Hopfe, Bryan Ospina-Jara, Thomas Scheibel, Jimmy Cabra-Garcia: Ocrepeira klamt sp. n. (Araneae: Araneidae), a novel spider species from an Andean páramo in Colombia. In: PLoS One, (2020). - .
doi:10.1371/journal.pone.0237499

Vanessa Neubauer, Thomas Scheibel: Spider Silk Fusion Proteins for Controlled Collagen Binding and Biomineralization. In: ACS Biomaterials Science & Engineering, (2020). - .
doi:10.1021/acsbiomaterials.0c00818

Mathilde Lefevre, Patrick Flammang, A.Sesilja Aranko, Markus B. Linder, Thomas Scheibel, Martin Humenik, Maxime Leclercq, Mathieu Surin, Lionel Tafforeau, Ruddy Wattiez, Philippe Leclèrc, Elise Hennebert: Sea star-inspired recombinant adhesive proteins self-assemble and adsorb on surfaces in aqueous environments to form cytocompatible coatings. In: Acta Biomaterialia, 112 (2020). - S. 62-74.
doi:10.1016/j.actbio.2020.05.036

Tao Huang, Sushma Kumari, Heike Herold, Hendrik Bargel, Tamara B. Aigner, Daniel E. Heath, Neil M. O'Brian-Simpson, Andrea J. O'Connor, Thomas Scheibel: Enhanced Antibacterial Activity of Se Nanoparticles Upon Coating with Recombinant Spider Silk Protein eADF4(κ16). In: International Journal of Nanomedicine, 15 (2020). - S. 4275-4288.
doi:10.2147/IJN.S255833

Elise DeSimone, Tamara Aigner, Martin Humenik, Gregor Lang, Thomas Scheibel: Aqueous electrospinning of recombinant spider silk proteins. In: Materials Science & Engineering C, Biomimetic and Supramolecular Systems, 106 (2020). - S. 110145.
doi:10.1016/j.msec.2019.110145

Sushma Kumari, Hendrik Bargel, Thomas Scheibel: Recombinant Spider Silk–Silica Hybrid Scaffolds with Drug-Releasing Properties for Tissue Engineering Applications. In: Macromolecular Rapid Communications, 41 (2020). - S. 1900426.
doi:10.1002/marc.201900426

Nico Bruns, Thomas Scheibel: Virtual Special Issue Biomimetic Polymers. In: European Polymer Journal, 122 (2020). - S. 109370.
doi:10.1016/j.eurpolymj.2019.109370

Frank Hahn, Florian M. Guth: The ambruticins and jerangolids : chemistry, biology and chemoenzymatic synthesis of potent antifungal drug candidates. In: Natural Product Reports, (2020). - .
doi:10.1039/D0NP00012D

Matthias Rothemund, Alexander Bär, Felix Klatt, Sascha Weidler, Leonhard Köhler, Carlo Unverzagt, Claus-D. Kuhn, Rainer Schobert: N-Metallocenoylsphingosines as targeted ceramidase inhibitors : Syntheses and antitumoral effects. In: Bioorganic Chemistry, (2020). - .
doi:10.1016/j.bioorg.2020.103703

Iana Kim, Sebastian Riedelbauch, Claus-D. Kuhn: The piRNA pathway in planarian flatworms : new model, new insights. In: Biological Chemistry, 401 (2020). - S. 1123-1141.
doi:10.1515/hsz-2019-0445

Felix Klatt, Alexander Leitner, Iana Kim, Hung Ho-Xuan, Elisabeth Schneider, Franziska Langhammer, Robin Weinmann, Melanie Müller, Robert Huber, Gunter Meister, Claus-D. Kuhn: A precisely positioned MED12 activation helix stimulates CDK8 kinase activity. In: Proceedings of the National Academy of Sciences of the United States of America, 117 (2020). - S. 2894-2905.
doi:10.1073/pnas.1917635117

2019

Merisa Saric, Thomas Scheibel: Engineering of silk proteins for materials applications. In: Current Opinion in Biotechnology, 60 (2019). - S. 213-220.
doi:10.1016/j.copbio.2019.05.005

Martin Humenik, Kiran Pawar, Thomas Scheibel: Nanostructured, Self-Assembled Spider Silk Materials for Biomedical Applications. In: Sarah Perrett, Alexander K. Buell, Thomas P. J. Knowles (Hrsg.): Biological and Bio-inspired Nanomaterials : Properties and Assembly Mechanisms. - Singapore : 2019. - S. 187-221.
doi.org/10.1007/978-981-13-9791-2_6

Dominik Steiner, Gregor Lang, Laura Fischer, Sophie Winkler, Tobias Fey, Peter Greil, Thomas Scheibel, Raymund E. Horch, Andreas Arkudas: Intrinsic Vascularization of Recombinant eADF4(C16) Spider Silk Matrices in the Arteriovenous Loop Model. In: Tissue Engineering / A, 25 (2019). - S. 1504-1513.
doi:10.1089/ten.tea.2018.0360

Iana Kim, Eric Ross, Sascha Dietrich, Kristina Döring, Alejandro Sánchez Alvarado, Claus-D. Kuhn: Efficient depletion of ribosomal RNA for RNA sequencing in planarians. In: BMC Genomics, 20 (2019). - .
doi:10.1186/s12864-019-6292-y

Iana Kim, Elizabeth Duncan, Eric Ross, Vladyslava Gorbovytska, Stephanie Nowotarski, Sarah Elliott, Alejandro Sánchez Alvarado, Claus-D. Kuhn: Planarians recruit piRNAs for mRNA turnover in adult stem cells. In: Genes & Development, 33 (2019). - S. 1575-1590.
doi:10.1101/gad.322776.118

Christian B. Borkner, Sarah Lentz, Martin Müller, Andreas Fery, Thomas Scheibel: Ultrathin Spider Silk Films : Insights into Spider Silk Assembly on Surfaces. In: ACS Applied Polymer Materials, 1 (2019). - S. 3366-3374.
doi:10.1021/acsapm.9b00792

Kiran Pawar, Georg Welzel, Christian Haynl, Stefan Schuster, Thomas Scheibel: Recombinant Spider Silk and Collagen-Based Nerve GuidanceConduits Support Neuronal Cell Differentiation and Functionality inVitro. In: Applied Bio Materials, 2 (2019). - S. 4872-4880.
doi:10.1021/acsabm.9b00628

Jia Wang, Michael H. Suhre, Thomas Scheibel: A mussel polyphenol oxidase-like protein shows thiol-mediated antioxidantactivity. In: European Polymer Journal, 113 (2019). - S. 305-3012.
doi:10.1016/j.eurpolymj.2019.01.069

Tamara Aigner, Thomas Scheibel: Self-Rolling Refillable Tubular Enzyme Containers Made ofRecombinant Spider Silk and Chitosan. In: ACS Applied Materials & Interfaces, 11 (2019). - S. 15290-15297.
doi:10.1021/acsami.9b01654

Heike Herold, Tamara Aigner, Carolin Grill, Stefanie Krüger, Andreas Taubert, Thomas Scheibel: SpiderMAEn : recombinant spider silk-basedhybrid materials for advanced energy technology. In: Bioinspired, Biomimetic and Nanobiomaterials, 8 (2019). - S. 99-108.
doi:10.1680/jbibn.18.00007

Matthias Röber, Sophie Laroque, Thomas Scheibel, Hans G. Börner: Modulating the collagen triple helix formation by switching : Positioning effects of depsi-defects on the assembly of [Gly-Pro-Pro]7 collagen mimetic peptides. In: European Polymer Journal, 112 (2019). - S. 301-305.
doi:10.1016/j.eurpolymj.2018.12.045

Peter Franzl, Karin Jacobs, Martin Möller, Thomas Scheibel, Karin Sternberg: Materialforschung : Impulsgeber Natur: Innovationspotenzial biologisch inspirierter Materialien und Werkstoffe. - München : acatech, 2019.

Vanessa J. Wicklein, Bernhard B. Singer, Thomas Scheibel, Sahar Salehi: Nanoengineered Biomaterials for corneal regeneration. In: Masoud Mozafari (Hrsg.): Nanoengineered Biomaterials for Regenerative Medicine : Micro and Nano Technologies. - Amsterdam : Elsevier, 2019. - S. 379-415.
doi:10.1016/B978-0-12-813355-2.00017-X

R. Helen Zha, Peyman Delparastan, Tanner D. Fink, Joschka Bauer, Thomas Scheibel, Phillip B. Messersmith: Universal nanothin silk coatings via controlled spidroin self-assembly. In: Biomaterials Science, 7 (2019). - S. 683-695.
doi:10.1039/C8BM01186A

2018

Anton Molina, Thomas Scheibel, Martin Humenik: Nanoscale patterning of surface via DNA directed spider silk assembly. In: Biomacromolecules, 20 (2018). - S. 347-352.
doi:10.1021/acs.biomac.8b01333

Frederick Lindner, Steffen Friedrich, Frank Hahn: Total Synthesis of Complex Biosynthetic Late-Stage Intermediates and Bioconversion by a Tailoring Enzyme from Jerangolid Biosynthesis. In: The Journal of Organic Chemistry, 83 (2018). - S. 14091-14101.
doi:10.1021/acs.joc.8b02047

Adrian V. Golser, Matthias Röber, Hans G. Börner, Thomas Scheibel: Engineered Collagen : A Redox Switchable Framework for Tunable Assembly and Fabrication of Biocompatible Surfaces. In: ACS Biomaterials Science & Engineering, 4 (2018). - S. 2106-2114.
doi:10.1021/acsbiomaterials.7b00583

Alexander Löhner:Untersuchung von molekularen Aggregaten natürlicher und künstlicher Lichtsammelsysteme mittels Einzelmolekül-Spektroskopie. - Bayreuth: 2018. - XXII, 166 S.
(Dissertation, 2018, Universität Bayreuth, Bayreuther Graduiertenschule für Mathematik und Naturwissenschaften - BayNAT)

Martin Pannek:Biochemical and structural studies on the mitochondrial Sirtuins 4 and 5. - Bayreuth: 2018. - 231 S.
(Dissertation, 2018, Universität Bayreuth, Bayreuther Graduiertenschule für Mathematik und Naturwissenschaften - BayNAT)

Eddie Hofmann, Kilian Krüger, Christian Haynl, Thomas Scheibel, Martin Trebbin, Stephan Förster: Microfluidic nozzle device for ultrafine fibersolution blow spinning with precise diametercontrol. In: Lab on a Chip, 18 (2018). - S. 2225-2234.
doi:10.1039/c8lc00304a

Matthias Lucke, Inès Mottas, Tina Herbst, Christian Hotz, Lin Römer, Martina Schierling, Heike M. Herold, Ute Slotta, Thibaud Spinetti, Thomas Scheibel, Gerhard Winter, Carole Bourquin, Julia Engert: Engineered hybrid spider silk particles as delivery system for peptide vaccines. In: Biomaterials, 172 (2018). - S. 105-115.
doi:10.1016/j.biomaterials.2018.04.008

Sushma Kumari, Hendrik Bargel, Mette U. Anby, David Lafargue, Thomas Scheibel: Recombinant spider silk hydrogels for sustained release of biologicals. In: ACS Biomaterials Science & Engineering, 4 (2018). - S. 1750-1759.
doi:10.1021/acsbiomaterials.8b00382

Adrian V. Golser, Thomas Scheibel: Routes towards Novel Collagen-Like Biomaterials. In: Fibers, 6 (2018). - .
doi:10.3390/fib6020021

Sahar Salehi, Thomas Scheibel: Biomimetic spider silk fibres : from vision to reality. In: The Biochemist, 40 (2018). - S. 4-7.

Eileen S. Lintz, Christoph Neinhuis, Thomas Scheibel: Altering Silk Film Surface Properties through Lotus-Like Mechanisms. In: Macromolecular Materials and Engineering, 303 (2018). - S. 1700637.
doi:10.1002/mame.201700637

Hendrik Bargel, Thomas Scheibel: Bioinspirierte Materialien : Aktuelle Trends in der Entwicklung. In: MNU Journal, 71 (2018). - S. 4-10.

Tamara Aigner, Elise DeSimone, Thomas Scheibel: Biomedical Applications of Recombinant Silk-Based Materials. In: Advanced Materials, (2018). - .
doi:10.1002/adma.201704636

Jia Wang, Thomas Scheibel: Coacervation of the Recombinant Mytilus galloprovincialis Foot Protein-3b. In: Biomacromolecules, 19 (2018). - S. 3612-3619.
doi:10.1021/acs.biomac.8b00583

Kaveh Roshanbinfar, Lena Vogt, Boris Greber, Sebastian Diecke, Aldo R. Boccaccini, Felix B. Engel, Thomas Scheibel: Electroconductive Biohybrid Hydrogel for Enhanced Maturation and Beating Properties of Engineered Cardiac Tissues. In: Advanced Functional Materials, (2018). - S. 1-10.
doi:10.1002/adfm.201803951

Adrian V. Golser, Matthias Röber, Hans G. Börner, Thomas Scheibel: Engineered Collagen : A Redox Switchable Framework for Tunable Assembly and Fabrication of Biocompatible Surfaces. In: ACS Biomaterials Science & Engineering, 4 (2018). - S. 2106-2114.
doi:10.1021/acsbiomaterials.7b00583

John G. Hardy, Annabelle Bertin, Jose Guillermo Torres-Rendon, Aldo Leal-Egaña, Martin Humenik, Felix Bauer, Andreas Walther, Helmut Cölfen, Helmut Schlaad, Thomas Scheibel: Facile Photochemical Modification of Silk Protein–Based Biomaterials. In: Macromolecular Bioscience, (2018). - S. 1-6.
doi:10.1002/mabi.201800216

Frank Mickoleit, Christian B. Borkner, Mauricio Toro-Nahuelpan, Heike M. Herold, Denis S. Maier, Jürgen M. Plitzko, Thomas Scheibel, Dirk Schüler: In Vivo Coating of Bacterial Magnetic Nanoparticles by Magnetosome Expression of Spider Silk-Inspired Peptides. In: Biomacromolecules, 19 (2018). - S. 962-972.
doi:10.1021/acs.biomac.7b01749

Hendrik Bargel, Thomas Scheibel: Inspirationen für mechanisch stabile Materialien aus der Natur : Von Gräsern über Spinnenseide bis zu Kieselalgen. In: MNU Journal, 71 (2018). - S. 37-44.

Eddie Hofmann, Kilian Krüger, Christian Haynl, Thomas Scheibel, Martin Trebbin, Stephan Förster: Microfluidic nozzle device for ultrafine fiber solution blow spinning with precise diameter control. In: Lab on a Chip, 18 (2018). - S. 2225-2234.
doi:10.1039/c8lc00304a

M. Haug, B. Reischl, G. Prölß, C. Pollmann, T. Buckert, C. Keidel, S. Schürmann, M. Hock, S. Rupitsch, Michael Heckel, Thorsten Pöschel, Thomas Scheibel, Christian Haynl, L. Kiriaev, Sl Head, Oliver Friedrich: The MyoRobot : A novel automated biomechatronics System to assess voltage/Ca2+ biosensors and active/passive biomechanics in muscle and biomaterials. In: Biosensors and Bioelectronics, 102 (2018). - S. 589-599.
doi:10.1016/j.bios.2017.12.003

Jja Wang, Thomas Scheibel: Recombinant Production of Mussel Byssus Inspired Proteins. In: Biotechnology Journal, Biotechnol. J. (2018). - .
doi:10.1002/biot.201800146

Martin Humenik, Madeleine Mohrand, Thomas Scheibel: Self-Assembly of Spider Silk-Fusion Proteins Comprising Enzymatic and Fluorescence Activity. In: Bioconjugate Chemistry, (2018). - .
doi:10.1021/acs.bioconjchem.7b00759

Martin Humenik, Gregor Lang, Thomas Scheibel: Silk nanofibril self-assembly versus electrospinning. In: WIREs Nanomedicine and Nanobiotechnology, (2018). - .
doi:10.1002/wnan.1509

2017

Heike M. Herold, Thomas Scheibel: Applicability of biotechnologically produced insect silks. In: Zeitschrift für Naturforschung C, 72 (2017). - S. 365.
doi:10.1515/znc-2017-0050

Iana Kim, Vladyslava Gorbovytska, Claus-D. Kuhn: Wie RNA die Genregulation beeinflusst. In: BIOspektrum, 23 (2017). - S. 513-515.
doi:10.1007/s12268-017-0832-2

Jana Petzold, Tamara Aigner, Filip Touska, Katharina Zimmermann, Felix B. Engel, Thomas Scheibel: Surface Features of Recombinant Spider Silk Protein eADF4(κ16)-Made Materials are Well-Suited for Cardiac Tissue Engineering. In: Advanced Functional Materials, (2017). - .
doi:10.1002/adfm.201701427

Joschka Bauer, Thomas Scheibel: Dimerization of the Conserved N‑Terminal Domain of a Spider Silk Protein Controls the Self-Assembly of the Repetitive Core Domain. In: Biomacromolecules, (2017). - .
doi:10.1021/acs.biomac.7b00672

Martin Neuenfeldt, Thomas Scheibel: Sequence Identification, Recombinant Production, and Analysis of the Self-Assembly of Egg Stalk Silk Proteins from Lacewing Chrysoperla carnea. In: Biomolecules, 43 (2017). - .
doi:10.3390/biom7020043

Abdallah Daddi Moussa Ider, Maciej Lisicki, Stephan Gekle: Hydrodynamic mobility of a solid particle near a spherical elastic membrane : II. Asymmetric motion. In: Physical Review E, 95 (2017). - S. 053117.
doi:10.1103/PhysRevE.95.053117

Christopher Thamm, Thomas Scheibel: Recombinant Production, Characterization, and Fiber Spinning of an Engineered Short Major Ampullate Spidroin (MaSp1s). In: Biomacromolecules, (2017). - .
doi:10.1021/acs.biomac.7b00090

Joschka Bauer, Thomas Scheibel: Conformational Stability and Interplay of Helical N- and C-Terminal Domains with Implications on Major Ampullate Spidroin Assembly. In: Biomacromolecules, (2017). - .
doi:10.1021/acs.biomac.6b01713

Christian Bächer, Lukas Schrack, Stephan Gekle: Clustering of microscopic particles in constricted blood flow. In: Physical Review Fluids, 2 (2017). - .
doi:10.1103/PhysRevFluids.2.013102

Abdallah Daddi Moussa Ider, Maciej Lisicki, Stephan Gekle: Mobility of an axisymmetric particle near an elastic interface. In: Journal of Fluid Mechanics, 811 (2017). - S. 210-233.
doi:10.1017/jfm.2016.739

Adrian V. Golser, Thomas Scheibel: Biotechnological production of the mussel byssus derived collagen preColD. In: RSC Advances, (2017). - .
doi:10.1039/c7ra04515h

Matthias Laumann, Paul Bauknecht, Stephan Gekle, Diego Kienle, Walter Zimmermann: Cross-stream migration of asymmetric particles driven by oscillating shear. In: Europhysics Letters, 117 (2017). - S. 44001.
doi:10.1209/0295-5075/117/44001

Stephan Gekle: Dispersion of solute released from a sphere flowing in a microchannel. In: Journal of Fluid Mechanics, 819 (2017). - S. 104-120.
doi:10.1017/jfm.2017.177

Kevin Wilma, Thomas Unger, SinemTuncel Kostakoglu, Manuel Hollfelder, Christoph Hunger, Andreas Lang, Ayse Gul Gurek, Mukundan Thelakkat, Jürgen Köhler, Anna Köhler, Stephan Gekle, Richard Hildner: Excited State Dynamics and Conformations of a Cu(II)-Phthalocyanine-Perylenebisimide Dyad. In: Physical Chemistry Chemical Physics, 19 (2017). - S. 22169-22176.
doi:10.1039/C7CP04026A

Arthur Markus Anton, Aniela Heidebrecht, Nasir Mahmood, Mario Beiner, Thomas Scheibel, Friedrich Kremer: Foundation of the Outstanding Toughness in Biomimetic and Natural Spider Silk. In: Biomacromolecules, 18 (2017). - S. 3954-3962.
doi:10.1021/acs.biomac.7b00990

Abdallah Daddi Moussa Ider, Stephan Gekle: Hydrodynamic mobility of a solid particle near a spherical elastic membrane : Axisymmetric motion. In: Physical Review E, 95 (2017). - .
doi:10.1103/PhysRevE.95.013108

Abdallah Daddi Moussa Ider, Maciej Lisicki, Stephan Gekle: Hydrodynamic mobility of a sphere moving on the centerline of an elastic tube. In: Physics of Fluids, 29 (2017). - .
doi:10.1063/1.5002192

Christina Zahn, Steve Keller, Mauricio Toro-Nahuelpan, Philipp Dorscht, Wolfgang Groß, Matthias Laumann, Stephan Gekle, Walter Zimmermann, Dirk Schüler, Holger Kress: Measurement of the magnetic moment of single Magnetospirillum gryphiswaldense cells by magnetic tweezers. In: Scientific Reports, 7 (2017). - .
doi:10.1038/s41598-017-03756-z

Gregor Lang, Benedikt R. Neugirg, Daniel Kluge, Andreas Fery, Thomas Scheibel: Mechanical Testing of Engineered Spider Silk Filaments Provides Insights into Molecular Features on a Mesoscale. In: ACS Applied Materials & Interfaces, 9 (2017). - S. 892-900.
doi:10.1021/acsami.6b13093

Gregor Lang, Heike M. Herold, Thomas Scheibel: Properties of Engineered and Fabricated Silks. In: Subcellular Biochemistry, (2017). - S. 527-573.
doi:10.1007/978-3-319-49674-0_16

Elise DeSimone, Kristin Schacht, Alexandra Pellert, Thomas Scheibel: Recombinant spider silk-based bioinks. In: Biofabrication, 9 (2017). - .
doi:10.1088/1758-5090/aa90db

Stephan Jokisch, Thomas Scheibel: Spider silk foam coating of fabric. In: Pure and Applied Chemistry, 89 (2017). - S. 1769-1776.
doi:10.1515/pac-2017-0601

Achim Guckenberger, Stephan Gekle: Theory and algorithms to compute Helfrich bending forces : a review. In: Journal of Physics: Condensed Matter, 29 (2017). - S. 203001-30.
doi:10.1088/1361-648X/aa6313

2016

Nicolas Helfricht, Elena Doblhofer, Vera Bieber, Petra Lommes, Volker Sieber, Thomas Scheibel, Georg Papastavrou: Probing the adhesion properties of alginate hydrogels : a new approach towards the preparation of soft colloidal probes for direct force measurements. In: Soft Matter, (2016). - .
doi:10.1039/C6SM02326F

Elise DeSimone, Kristin Schacht, Thomas Scheibel: Cations influence the cross-linking of hydrogels made of recombinant, polyanionic spider silk proteins. In: Materials Letters, 183 (2016). - S. 101-104.
doi:10.1016/j.matlet.2016.07.044

Li Liu, Ali Ghaemi, Stephan Gekle, Seema Agarwal: One‐Component Dual Actuation : Poly(NIPAM) Can Actuate to Stable 3D Forms with Reversible Size Change. In: Advanced Materials, 28 (2016). - S. 9792-9796.
doi:10.1002/adma.201603677

Joschka Bauer, Thomas Scheibel: Die Schwarze Witwe und ihre Künste. In: Spektrum, 12 (2016). - S. 60-63.

Achim Guckenberger, Marcel Schraml, Paul G. Chen, Marc Leonetti, Stephan Gekle: On the bending algorithms for soft objects in flows. In: Computer Physics Communications, 207 (2016). - S. 1-23.
doi:10.1016/j.cpc.2016.04.018

Joschka Bauer, Daniel Schaal, Lukas Eisoldt, Kristian Schweimer, Stephan Schwarzinger, Thomas Scheibel: Acidic Residues Control the Dimerization of the N-terminal Domain of Black Widow Spiders' Major Ampullate Spidroin 1. In: Scientific Reports, 6 (2016). - .
doi:10.1038/srep34442

Elena Doblhofer, Jasmin Schmid, Martin Rieß, Matthias Daab, Magdalena Suntinger, Christoph Habel, Hendrik Bargel, Christoph Hugenschmidt, Sabine Rosenfeldt, Josef Breu, Thomas Scheibel: Structural Insights into Water-Based Spider Silk Protein−Nanoclay Composites with Excellent Gas and Water Vapor Barrier Properties. In: ACS Applied Materials & Interfaces, (2016). - .
doi:10.1021/acsami.6b08287

Martina Schierling, Elena Doblhofer, Thomas Scheibel: Cellular uptake of drug loaded spider silk particles. In: Biomaterials Science, (2016). - .
doi:10.1039/C6BM00435K

Christian Haynl, Eddie Hofmann, Kiran Pawar, Stephan Förster, Thomas Scheibel: Microfluidics-Produced Collagen Fibers Show Extraordinary Mechanical Properties. In: Nano Letters, (2016). - .
doi:10.1021/acs.nanolett.6b02828

Christian B. Borkner, Stefanie Wohlrab, Eva Möller, Gregor Lang, Thomas Scheibel: Surface Modification of Polymeric Biomaterials Using Recombinant Spider Silk Proteins. In: ACS Biomaterials Science & Engineering, (2016). - .
doi:10.1021/acsbiomaterials.6b00306

Thomas Scheibel, Helmut Zahn, Anita Krasowski: Silk. In: Ullmann's Encyclopedia of Industrial Chemistry. - Weinheim : Wiley-VCH, 2016. - S. 1-15.
doi:10.1002/14356007.a24_095.pub2

Nicolas Helfricht, Elena Doblhofer, Jérôme F. L. Duval, Thomas Scheibel, Georg Papastavrou: Colloidal Properties of Recombinant Spider Silk Protein Particles. In: The Journal of Physical Chemistry C, 120 (2016). - S. 18015-18027.
doi:10.1021/acs.jpcc.6b03957

John G. Hardy, Jose Guillermo Torres-Rendon, Aldo Leal-Egaña, Andreas Walther, Helmut Schlaad, Helmut Cölfen, Thomas Scheibel: Biomineralization of Engineered Spider Silk Protein-Based Composite Materials for Bone Tissue Engineering. In: Materials, 9 (2016). - .
doi:10.3390/ma9070560

Hendrik Bargel, Thomas Scheibel: Zukunftsfeld Bionik. In: Spektrum, 12 (2016). - S. 54-57.

Claus-D. Kuhn: RNA versatility governs tRNA function : Why tRNA flexibility is essential beyond the translation cycle. In: BioEssays, 38 (2016). - S. 465-473.
doi:10.1002/bies.201500190

Kristin Schacht, Jessica Vogt, Thomas Scheibel: Foams made of enigneered recombinant Spider Silk Proteins as 3D Scaffolds for Cell Growth. In: ACS Biomaterials Science & Engineering, (2016). - .
doi:10.1021/acsbiomaterials.5b00483

Daniel Schaal, Joschka Bauer, Kristian Schweimer, Thomas Scheibel, Paul Rösch, Stephan Schwarzinger: Resonance assignment of an engineered amino-terminal domain of a major ampullate spider silk with neutralized charge cluster. In: Biomolecular NMR Assignments, 10 (2016). - S. 199-202.
doi:10.1007/s12104-016-9666-y

Thomas Scheibel, Jürgen Groll, Aldo R. Boccaccini, Tobias Zehnder, Thomasz Jungst, Kristin Schacht: Zellgewebe aus dem Drucker. In: Nachrichten aus der Chemie, 64 (2016). - S. 13-16.
doi:10.1002/nadc.20164044385

Abdallah Daddi Moussa Ider, Stephan Gekle: Hydrodynamic interaction between particles near elastic interfaces. In: The Journal of Chemical Physics, 145 (2016). - .
doi:10.1063/1.4955099

Abdallah Daddi Moussa Ider, Achim Guckenberger, Stephan Gekle: Long-lived anomalous thermal diffusion induced by elastic cell membranes on nearby particles. In: Physical Review E, 93 (2016). - S. 012612.
doi:10.1103/PhysRevE.93.012612

Abdallah Daddi Moussa Ider, Achim Guckenberger, Stephan Gekle: Particle mobility between two planar elastic membranes : Brownian motion and membrane deformation. In: Physics of Fluids, 28 (2016). - .
doi:10.1063/1.4955013

David L. Kaplan, Thomas Scheibel: Recombinant Silk Production in Bacteria. In: Reference Module in Materials Science and Materials Engineering. - Amsterdam : 2016. - S. 8615-8618.
doi:10.1016/B978-0-12-803581-8.02274-8

Christian Schaaf, Stephan Gekle: Spatially resolved dielectric constant of confined water and its connection to the non-local nature of bulk water. In: The Journal of Chemical Physics, 145 (2016). - S. 084901.
doi:10.1063/1.4960775

Stephan Gekle: Strongly Accelerated Margination of Active Particles in Blood Flow. In: Biophysical Journal, 110 (2016). - S. 514-520.
doi:10.1016/j.bpj.2015.12.005

2015

Tomasz Jüngst, Willi Smolan, Kristin Schacht, Thomas Scheibel, Jürgen Groll: Strategies and Molecular Design Criteria for 3D Printable Hydrogels. In: Chemical Reviews, (2015). - .
doi:10.1021/acs.chemrev.5b00303

Elena Doblhofer, Aniela Heidebrecht, Thomas Scheibel: To spin or not to spin: spider silk fibers and more. In: Applied Microbiology and Biotechnology, 99 (2015). - S. 1-20.
doi:10.1007/s00253-015-6948-8

Thomas Scheibel: Vom Spinnennetz zur High-Tech-Faser. In: Naturwissenschaftliche Rundschau, 68 (2015). - S. 36-37.

Nicola Blum, Gerrit Begemann: Osteoblast de- and redifferentiation are controlled by a dynamic response to retinoic acid during zebrafish fin regeneration. In: Development, 142 (2015). - S. 2894-2903.
doi:10.1242/dev.120204

Nicola Blum, Gerrit Begemann: Retinoic acid signaling spatially restricts osteoblasts and controls ray-interray organization during zebrafish fin regeneration. In: Development, 142 (2015). - S. 2888-2893.
doi:10.1242/dev.120212

Dirk Kostrewa, Claus-D. Kuhn, Christoph Engelhard, Patrick Cramer: An alternative RNA polymerase I structure reveals a dimer hinge. In: Acta Crystallographica Section D, 71 (2015). - S. 1850-1855.
doi:10.1107/S1399004715012651

Ling Peng, Shaohua Jjang, Maximilian Seuss, Andreas Fery, Gregor Lang, Thomas Scheibel, Seema Agarwal: Two-in-One Composite Fibers With Side-by-Side Arrangement of Silk Fibroin and Poly(l-lactide) by Electrospinning. In: Macromolecular Materials and Engineering, (2015). - .
doi:10.1002/mame.201500217

Elise DeSimone, Kristin Schacht, Thomasz Jungst, Jürgen Groll, Thomas Scheibel: Biofabrication of 3D constructs : fabrication technologies and spider silk proteins as bioinks. In: Pure and Applied Chemistry, 87 (2015). - S. 737-749.
doi:10.1515/pac-2015-0106

Martin Humenik, Andrew M. Smith, Sina Arndt, Thomas Scheibel: Ion and seed dependent fibril assembly of a spidroin core domain. In: Journal of Structural Biology, 191 (2015). - S. 130-138.
doi:10.1016/j.jsb.2015.06.021

Susanne Müller-Herrmann, Thomas Scheibel: Enzymatic degradation of films, particles and non-woven meshes made of a recombinant spider silk protein. In: ACS Biomaterials Science & Engineering, 1 (2015). - S. 247-259.
doi:10.1021/ab500147u

Aniela Heidebrecht, Lukas Eisoldt, Johannes Diehl, Andreas Schmidt, Martha Geffers, Gregor Lang, Thomas Scheibel: Biomimetic Fibers Made of Recombinant Spidroins with the Same Toughness as Natural Spider Silk. In: Advanced Materials, 27 (2015). - S. 2189-2194.
doi:10.1002/adma.201404234

Willi Riber, Jana T. Müller, Eric J. W. Visser, Rashmi Sasidharan, Laurentius A. C. J. Voesenek, Angelika Mustroph: The greening after extended darkness1 is an N-end rule pathway mutant with high tolerance to submergence and starvation. In: Plant Physiology, 167 (2015). - S. 1616-1629.
doi:10.1104/pp.114.253088

Elena Doblhofer, Thomas Scheibel: Engineering of Recombinant Spider Silk Proteins Allows Defined Uptake and Release of Substances. In: Journal of Pharmaceutical Sciences, 104 (2015). - S. 988-994.
doi:10.1002/jps.24300

Susanne Mülller-Herrmann, Thomas Scheibel: Enzymatic Degradation of Films, Particles, and Nonwoven Meshes Made of a Recombinant Spider Silk Protein. In: ACS Biomaterials Science & Engineering, 1 (2015). - S. 247-259.
doi:10.1021/ab500147u

Kristin Schacht, Tomasz Jüngst, Matthias Schweinlin, Andrea Ewald, Jürgen Groll, Thomas Scheibel: Biofabrication of Cell-Loaded 3D Spider Silk Constructs. In: Angewandte Chemie International Edition, 54 (2015). - S. 2816-2820.
doi:10.1002/anie.201409846

Kristin Schacht, Tomasz Jüngst, Matthias Schweinlin, Andrea Ewald, Jürgen Groll, Thomas Scheibel: Biofabrication of Cell-Loaded 3D Spider Silk Constructs. In: Angewandte Chemie International Edition, 54 (2015). - S. 2816-2820.
doi:10.1002/anie.201409846

Kristin Schacht, Tomasz Jüngst, Matthias Schweinlin, Andrea Ewald, Jürgen Groll, Thomas Scheibel: Dreidimensional gedruckte, zellbeladene Konstrukte aus Spinnenseide. In: Angewandte Chemie, 127 (2015). - S. 2858-2862.
doi:10.1002/ange.201409846

David Keerl:Material characterization of an engineered spider silk protein and conception of a process for its biomimetic spinning. - Bayreuth: 2015. - XIII, 164 S.
(Dissertation, 2015, Universität Bayreuth, Fakultät für Ingenieurwissenschaften)

Martina B. Elsner, Heike M. Herold, Susanne Müller-Herrmann, Hendrik Bargel, Thomas Scheibel: Enhanced cellular uptake of engineered spider silk particles. In: Biomaterials Science, 3 (2015). - S. 543-551.
doi:10.1039/c4bm00401a

Thomas Scheibel: Die Kräfte der Superhelden oder : Was Spiderman besser wissen sollte. - Bayreuth : 2015. - 30 S.

Miriam Jahn, Stephan Gekle: Bulk and interfacial liquid water as a transient network. In: Physical Review E, 92 (2015). - S. 052130.
doi:10.1103/PhysRevE.92.052130

Jean-Yves Cornu, Ulrich Deinlein, Stephan Höreth, Manuel Braun, Holger Schmidt, Michael Weber, Daniel P. Persson, Søren Husted, Jan K. Schjørring, Stephan Clemens: Contrasting effects of nicotianamine synthase knockdown on zinc and nickel tolerance and accumulation in the zinc/cadmium hyperaccumulator Arabidopsis halleri. In: New Phytologist, 206 (2015). - S. 738-750.
doi:10.1111/nph.13237

Thomas Scheibel: Engineering of rec SSP allows defined drug uptake and release. In: Biotech, Biomaterials and Biomedical : TechConnect Briefs 2015. - Boca Raton : Productivy Press, 2015. - S. 1-4.

Martina B. Elsner, Heike M. Herold, Susanne Müller-Herrmann, Hendrik Bargel, Thomas Scheibel: Enhanced cellular uptake of engineered spider silk particles. In: Biomaterials Science, 3 (2015). - S. 543-551.
doi:10.1039/c4bm00401a

Gregor Lang:Herstellung und Charakterisierung von Fasern aus rekombinanten Spinnenseidenproteinen und deren potentielle Applikationen. - Bayreuth: 2015. - III, 167 S.
(Dissertation, 2015, Universität Bayreuth, Fakultät für Ingenieurwissenschaften)

Claus-D. Kuhn, Jeremy E. Wilusz, Yuxuan Zheng, Peter A. Beal, Leemor Joshua-Tor: On-enzyme refolding permits small RNA and tRNA surveillance by the CCA-adding enzyme. In: Cell, 160 (2015). - S. 644-658.
doi:10.1016/j.cell.2015.01.005

Christian Seutter von Loetzen:Die physiologische und immunologische Rolle von PR-10 Allergenen. - Bayreuth: 2015. - V, 125 S.
(Dissertation, 2015, Universität Bayreuth, Fakultät für Biologie, Chemie und Geowissenschaften)

Martin Neuenfeldt, Thomas Scheibel: Silks from Insects — From Natural Diversity to Applications. In: Hoffmann, Klaus H. (Hrsg.): Insect Molecular Biology and Ecology. - Boca Raton : CRC Press, 2015. - S. 376-400.

Philipp Gasch:Zentrale Cis- und Transregulation der pflanzlichen Hypoxieantwort. - Bayreuth: 2015. - VII, 158 S.
(Dissertation, 2015, Universität Bayreuth, Fakultät für Biologie, Chemie und Geowissenschaften)

2014

Philip H. Zeplin, A.-K. Berninger, Nathalie C. Maksimovikj, P. van Gelder, Thomas Scheibel, H. Walles: Verbesserung der Biokompatibilität von Silikonimplantaten durch Spinnenseidenbeschichtung: Immunhistochemische Untersuchungen zum Einfluss auf die Kapselbildung. In: Handchirurgie, Mikrochirurgie, plastische Chirurgie, (2014). - S. 336-341.
doi:10.1055/s-0034-1395558

Martin Humenik, Thomas Scheibel: Self-assembly of nucleic acids, silk and hybrid materials thereof. In: Journal of Physics: Condensed Matter, 26 (2014). - .
doi:10.1088/0953-8984/26/50/503102

Aniela Heidebrecht, Thomas Scheibel: Spionik : Biotech Spinnenseide und Ihre Einsatzgebiete. In: Bioforum, 37 (2014). - S. 20-22.

Aniela Heidebrecht, Thomas Scheibel: "Spionik". In: Bioforum, 37 (2014). - S. 20-22.

Angelika Mustroph, Gregory A. Barding, Kayla A. Kaiser, Cynthia K. Larive, Julia Bailey-Serres: Characterization of distinct root and shoot responses to low-oxygen stress in Arabidopsis with a focus on primary C- and N-metabolism. In: Plant, Cell & Environment, 37 (2014). - S. 2366-2380.
doi:10.1111/pce.12282

Kristin Schacht, Thomas Scheibel: Processing of recombinant spider silk proteins into tailor-made materials for biomaterials applications. In: Current Opinion in Biotechnology, 29 (2014). - S. 62-69.
doi:10.1016/j.copbio.2014.02.015

Christian B. Borkner, Martina B. Elsner, Thomas Scheibel: Coatings and Films Made of Silk Proteins. In: ACS Applied Materials & Interfaces, 6 (2014). - S. 15611-15625.
doi:10.1021/am5008479

Anja Yvonne Lauterbach, Thomas Scheibel: Life cycle assessment of spider silk nonwoven meshes in an air filtration device. In: Green Materials, 2 (2014). - .
doi:10.1680/gmat.14.00011

Anja Hagenau, Michael H. Suhre, Thomas Scheibel: Nature as a blueprint for polymer material concepts : proteinfiber-reinforced composites as holdfasts of mussels. In: Progress in Polymer Science, 39 (2014). - S. 1564-1583.
doi:10.1016/j.progpolymsci.2014.02.007

Cordt Zollfrank, Thomas Scheibel, Heike Seitz, Nahum Travitzky: Bioinspired materials engineering. In: Ullmann's Encyclopedia of Industrial Chemistry : 100 years. - Weinheim : Wiley-VCH, 2014.
doi:10.1002/14356007.s04_s01

Martin Humenik, Markus Drechsler, Thomas Scheibel: Controlled Hierarchical Assembly of Spider Silk-DNA Chimeras into Ribbons and Raft-Like Morphologies. In: Nano Letters, 14 (2014). - S. 3999-4004.
doi:10.1021/nl501412k

John G. Hardy, André Pfaff, Aldo Leal-Egaña, Thomas Scheibel: Glycopolymer Functionalization of Engineered Spider Silk Protein-based Materials for Improved Cell Adhesion. In: Macromolecular Bioscience, 14 (2014). - S. 936-942.
doi:10.1002/mabi.201400020

Gregor Lang, Thomas Scheibel: Multifunktionale Spinnenseide - ein vielversprechender Werkstoff. In: Maschinenmarkt, (2014). - S. 36.

José R. A. dos Santos-Pinto, Günther Lamprecht, Wei-Qiang Chen, Seok Heo, John G. Hardy, Helga Priewalder, Thomas Scheibel, Mario Sergio Palma, Gert Lubec: Structure and post-translational modifications of the web silk protein spidroin-1 from Nephila spiders. In: Journal of Proteomics, Vol. 105 (2014). - S. 174-185.
doi:10.1016/j.jprot.2014.01.002

Michael H. Suhre, Thomas Scheibel, Clemens Steegborn, Melanie Gertz: Crystallization and preliminary X-ray diffractionanalysis of proximal thread matrix protein 1(PTMP1) from Mytilus galloprovincialis. In: Acta Crystallographica Section F, 70 (2014). - S. 769-772.
doi:10.1107/S2053230X14006165

Martin Humenik, Michael Magdeburg, Thomas Scheibel: Influence of repeat numbers on self-assembly rates of repetitive recombinant spider silk proteins. In: Journal of Structural Biology, 186 (2014). - S. 431-437.
doi:10.1016/j.jsb.2014.03.010

Susanne Hellmuth, Franziska Böttger, Cuiping Pan, Matthias Mann, Olaf Stemmann: PP2A delays APC/C-dependent degradation of separase-associated but not free securin. In: The EMBO Journal, 33 (2014). - S. 1134-1147.
doi:10.1002/embj.201488098

Maria Klecker, Philipp Gasch, Helga Peisker, Peter Dörmann, Hagen Schlicke, Bernhard Grimm, Angelika Mustroph: A Shoot-Specific Hypoxic Response of Arabidopsis Sheds Light on the Role of the Phosphate-Responsive Transcription Factor PHOSPHATE STARVATION RESPONSE1. In: Plant Physiology, 165 (2014). - S. 774-790.
doi:10.1104/pp.114.237990

Michael H. Suhre, Thomas Scheibel: Structural diversity of a collagen-binding matrix protein from the byssus of blue mussels upon refolding. In: Journal of Structural Biology, 186 (2014). - S. 75-85.
doi:10.1016/j.jsb.2014.02.013

Michael H. Suhre, Melanie Gertz, Clemens Steegborn, Thomas Scheibel: Structural and functional features of a collagen-binding matrix protein from the mussel byssus. In: Nature Communications, 5 (2014). - .
doi:10.1038/ncomms4392

Sina Fischer, Tanja Kühnlenz, Michael Thieme, Holger Schmidt, Stephan Clemens: Analysis of plant Pb tolerance at realistic submicromolar concentrations demonstrates the role of phytochelatin synthesis for Pb detoxification. In: Environmental Science & Technology, 48 (2014). - S. 7552-7559.
doi:10.1021/es405234p

Tanja Kühnlenz, Holger Schmidt, Shimpei Uraguchi, Stephan Clemens: Arabidopsis thaliana phytochelatin synthase 2 is constitutively active in vivo and can rescue the growth defect of the PCS1-deficient cad1-3 mutant on Cd-contaminated soil. In: Journal of Experimental Botany, 65 (2014). - S. 4241-4253.
doi:10.1093/jxb/eru195

Melis Akman, Amit Bhikharie, Angelika Mustroph, Rashmi Sasidharan: Extreme flooding tolerance in Rorippa. In: Plant Signaling & Behavior, 9 (2014). - S. e27847.
doi:10.4161/psb.27847

Holger Schmidt, Carmen Günther, Michael Weber, Cornelia Spörlein, Sebastian Loscher, Christoph Böttcher, Rainer Schobert, Stephan Clemens: Metabolome analysis of Arabidopsis thaliana roots identifies a key metabolic pathway for iron acquisition. In: PLoS One, 9 (2014). - S. e102444.
doi:10.1371/journal.pone.0102444

Martin Humenik, Thomas Scheibel: Nanomaterial Building Blocks Based on Spider Silk - Oligonucleotide Conjugates. In: ACS Nano, 8 (2014). - S. 1342-1349.
doi:10.1021/nn404916f

Stefanie Wohlrab, Christopher Thamm, Thomas Scheibel: The Power of Recombinant Spider Silk Proteins. In: Asakura, Tetsuo ; Miller, Thomas (Hrsg.): Biotechnology of Silk. - Dordrecht : Springer, 2014. - S. 179-201.
doi:10.1007/978-94-007-7119-2_10

Martin Neuenfeldt, Thomas Scheibel: Silks from Insects : From Natural Diversity to Applications. In: Klaus H. Hofmann (Hrsg.): Insect Molecular Biology and Ecology. - Boca Raton : CRC Press, 2014. - S. 376-400.

Claudia Blüm, Alfons Nichtl, Thomas Scheibel: Spider Silk Capsules as Protective Reaction Containers for Enzymes. In: Advanced Functional Materials, (2014). - S. 763-768.
doi:10.1002/adfm.201302100

Philip H. Zeplin, Nathalie C. Maksimovikj, Martin C. Jordan, Joachim Nickel, Gregor Lang, Axel H. Leimer, Lin Römer, Thomas Scheibel: Spider Silk Coatings as a Bioshield to Reduce Periprosthetic Fibrous Capsule Formation. In: Advanced Functional Materials, 24 (2014). - S. 2658-2666.
doi:10.1002/adfm.201302813

Stephan Clemens: Zn and Fe biofortification: the right chemical environment for human bioavailability. In: Plant Science, 225 (2014). - S. 52-57.
doi:10.1016/j.plantsci.2014.05.014

2013

Felix Bauer, Stefanie Wohlrab, Thomas Scheibel: Controllable cell adhesion, growth and orientation on layered silk protein films. In: Biomaterials Science, 12 (2013). - S. 1244-1249.
doi:10.1039/c3bm60114e

Ahmed Rattani, Magda Wolna, Mickael Ploquin, Wolfgang Helmhart, Seamus Morrone, Bernd Mayer, Jonathan Godwin, Wenqing Xu, Olaf Stemmann, Alberto M. Pendás, Kim Nasmyth: Sgol2 provides a regulatory platform that coordinates essential cell cycle processes during meiosis I in oocytes. In: eLIFE, 2 (2013). - .
doi:10.7554/eLife.01133.001

Nicolas Helfricht, Maria Klug, Andreas Mark, Volodymyr Kuznetsov, Georg Papastavrou, Claudia Blüm, Thomas Scheibel: Surface properties of spider silk particles in solution. In: Biomaterials Science, 1 (2013). - S. 1166-1171.
doi:10.1039/c3bm60109a

Rashmi Sasidharan, Angelika Mustroph, Alex Boonman, Melis Akman, Ankie M. H. Ammerlaan, Timo Breit, M. Eric Schranz, Laurentius A. C. J. Voesenek, Peter H. van Tienderen: Root transcript profiling of two Rorippa species reveals gene clusters associated with extreme submergence tolerance. In: Plant Physiology, 163 (2013). - S. 1277-1292.
doi:10.1104/pp.113.222588

Hans van Veen, Angelika Mustroph, Gregory A. Barding, Marleen Vergeer-van Eijk, Rob A. M. Welschen-Evertman, Ole Pedersen, Eric J. W. Visser, Cynthia K. Larive, Ronald Pierik, Julia Bailey-Serres, Laurentius A. C. J. Voesenek, Rashmi Sasidharan: Two Rumex species from contrasting hydrological niches regulate flooding tolerance through distinct mechanisms. In: The Plant Cell, 25 (2013). - S. 4691-4707.
doi:10.1105/tpc.113.119016

John G. Hardy, Aldo Leal-Egaña, Thomas Scheibel: Engineered spider silk protein-based composites for drug delivery. In: Macromolecular Bioscience, 13 (2013). - S. 1431-1437.
doi:10.1002/mabi.201300233

Kai U. Claußen, Hans-Werner Schmidt, Eileen S. Lintz, Thomas Scheibel: Protein Gradient Films of Fibroin and Gelatine. In: Macromolecular Bioscience, 13 (2013). - S. 1396-1403.
doi:10.1002/mabi.201300221

Eileen S. Lintz, Thomas Scheibel: Dragline, Egg Stalk and Byssus : A Comparison of Outstanding Protein Fibers and Their Potential for Developing New Materials. In: Advanced Functional Materials, 23 (2013). - S. 4467-4482.
doi:10.1002/adfm.201300589

Thomas Scheibel: Spinnenseide. In: chemie & more, (2013). - S. 43-45.

Martin Peter Neubauer, Claudia Blüm, Elisa Agostini, Julia Engert, Thomas Scheibel, Andreas Fery: Micromechanical characterization of spider silk particles. In: Biomaterials Science, (2013). - S. 1160-1165.
doi:10.1039/C3BM60108K

Gregor Lang, Stephan Jokisch, Thomas Scheibel: Air Filter Devices Including Nonwoven Meshes of Electrospun Recombinant Spider Silk Proteins. In: Journal of Visualized Experiments, (2013). - S. 50492.
doi:10.3791/50492

Claus-D. Kuhn, Leemor Joshua-Tor: Eukaryotic Argonautes come into focus. In: Trends in Biochemical Sciences, 38 (2013). - S. 263-271.
doi:10.1016/j.tibs.2013.02.008

Julia P. Hofmann, Philip Denner, Carmen Nussbaum-Krammer, Peer-Hendrik Kuhn, Michael H. Suhre, Thomas Scheibel, Stefan F. Lichtenthaler, Hermann M. Schätzl, Daniele Bano, Ina M. Vorberg: Cell-to-cell propagation of infectious cytosolic protein aggregates. In: Proceedings of the National Academy of Sciences of the United States of America, 110 (2013). - S. 5951-5956.
doi:10.1073/pnas.1217321110

Johannes Buheitel, Olaf Stemmann: Prophase pathway-dependent removal of cohesin from human chromosomes requires opening of the Smc3-Scc1 gate. In: The EMBO Journal, 32 (2013). - S. 666-676.
doi:10.1038/emboj.2013.7

Angelika Mustroph, Johanna Stock, Natalia Hess, Sophia Aldous, Anika Dreilich, Bernhard Grimm: Characterization of the phosphofructokinase gene family in rice and its expression under oxygen deficiency stress.. In: Frontiers in Plant Science, 4 (2013). - S. No. 125.
doi:10.3389/fpls.2013.00125

Angelika Mustroph, Maria Eugenia Zanetti, Thomas Girke, Julia Bailey-Serres: Isolation and analysis of mRNAs from specific cell types of plants by ribosome immunopurification. In: Smet, Ive de (ed.): Plant organogenesis : methods and protocols. - New York : Humana Press, 2013. - S. 277-302.
doi:10.1007/978-1-62703-221-6_19

Markus Heim, Martina B. Elsner, Thomas Scheibel: Lipid-Specific β‑Sheet Formation in a Mussel Byssus Protein Domain. In: Biomacromolecules, 14 (2013). - S. 3238-3245.
doi:10.1021/bm400860y

Martin Peter Neubauer, Claudia Blüm, Elisa Agostini, Julia Engert, Thomas Scheibel, Andreas Fery: Micromechanical characterization of spider silk particles. In: Biomaterials Science, 1 (2013). - S. 1160-1165.
doi:10.1039/c3bm60108k

Stephan Clemens, Mark G. M. Aarts, Sébastien Thomine, Nathalie Verbruggen: Plant Science : the key to preventing slow cadmium poisoning. In: Trends in Plant Science, 18 (2013). - S. 92-99.
doi:10.1016/j.tplants.2012.08.003

Kai U. Claußen, Eileen S. Lintz, Reiner Giesa, Hans-Werner Schmidt, Thomas Scheibel: Protein Gradient Films of Fibroin and Gelatine. In: Macromolecular Bioscience, 13 (2013). - S. 1396-1403.
doi:10.1002/mabi.201300221

David Keerl, Thomas Scheibel: Rheological characterization of silk solutions. In: Green Materials, 2 (2013). - S. 11-23.
doi:10.1680/gmat.13.00009

Thomas Scheibel: Spinnenseide Biotech-Fasern mit naturidentischer Belastbarkeit. In: chemie & more, (2013). - S. 3-5.

Michael H. Suhre:Struktur-/Funktionsbeziehung rekombinant hergestellter Proteine aus dem Byssusfaden der Miesmuschel Mytilus galloprovincialis. - Bayreuth: 2013. - 198 S.
(Dissertation, 2013, Universität Bayreuth, Bayreuther Graduiertenschule für Mathematik und Naturwissenschaften - BayNAT)

2012

Sandra A. Touati, Damien Cladière, Lisa M. Lister, Ioanna Leontiou, Jean-Philippe Chambon, Ahmed Rattani, Franziska Böttger, Olaf Stemmann, Kim Nasmyth, Mary Herbert, Katja Wassermann: Cyclin A2 Is Required for Sister Chromatid Segregation, But Not Separase Control, in Mouse Oocyte Meiosis. In: Cell Reports, 2 (2012). - S. 1077-1087.
doi:10.1016/j.celrep.2012.10.002

Felix Bauer, Luca Bertinetti, Admir Masic, Thomas Scheibel: Dependence of Mechanical Properties of Lacewing Egg Stalks on Relative Humidity. In: Biomacromolecules, 13 (2012). - S. 3730-3735.
doi:10.1021/bm301199d

Stefanie Wohlrab, Kristina Spieß, Thomas Scheibel: Varying surface hydrophobicities of coatings made of recombinant spider silk proteins. In: Journal of Materials Chemistry, 22 (2012). - S. 22050-22054.
doi:10.1039/c2jm35075k

Stefanie Wohlrab, Susanne Müller-Herrmann, Andreas Schmidt, Stefanie Neubauer, Horst Kessler, Aldo Leal-Egaña, Thomas Scheibel: Cell adhesion and proliferation on RGD-modified recombinant spider silk proteins. In: Biomaterials, 33 (2012). - S. 6550-6559.
doi:10.1016/j.biomaterials.2012.05.069

Seth L. Young, Maneesh Gupta, Christoph Hanske, Andreas Fery, Thomas Scheibel, Vladimir V. Tsukruk: Utilizing conformational changes for patterning thin films of recombinant spider silk proteins. In: Biomacromolecules, 13 (2012). - S. 3189-3199.
doi:10.1021/bm300964h

Aldo Leal-Egaña, Thomas Scheibel: Interactions of cells with silk surfaces. In: Journal of Materials Chemistry, 22 (2012). - S. 14330-14336.
doi:10.1039/C2JM31174G

Felix Bauer, Thomas Scheibel: Artificial Egg Stalks Made of a Recombinantly Produced Lacewing Silk Protein. In: Angewandte Chemie International Edition, 51 (2012). - S. 6521-6524.
doi:10.1002/anie.201200591

Felix Bauer, Thomas Scheibel: Artifizielle Eierstiele, hergestellt aus rekombinant produziertem Florfliegenseidenprotein. In: Angewandte Chemie, 124 (2012). - S. 6627-6630.
doi:10.1002/ange.201200591

Lukas Eisoldt, Christopher Thamm, Thomas Scheibel: The role of terminal domains during storage and assembly of spider silk proteins. In: Biopolymers, 91 (2012). - S. 355-361.
doi:10.1002/bip.22006

Aldo Leal-Egaña, Gregor Lang, Carolin Mauerer, Jasmin Wickinghoff, Michael Weber, Stefan Geimer, Thomas Scheibel: Interactions of Fibroblasts with Different Morphologies Made of an Engineered Spider Silk Protein. In: Advanced Engineering Materials, 14 (2012). - S. B67-B75.
doi:10.1002/adem.201180072

David Keerl, Thomas Scheibel: Characterization of natural and biomimetic spider silk fibers. In: Bioinspired, Biomimetic and Nanobiomaterials, 1 (2012). - S. 83-94.
doi:10.1680/bbn.11.00016

Claudia Blüm, Thomas Scheibel: Control of Drug Loading and Release Properties of Spider Silk Sub-Microparticles. In: BioNanoScience, 2 (2012). - S. 67-74.
doi:10.1007/s12668-012-0036-7

Thomas Scheibel: Herstellung und Verarbeitung von Spinnenseidenproteinen. In: GAK : Gummi, Fasern, Kunststoffe, 2012 (2012). - S. 41-43.

Kai U. Claußen, Reiner Giesa, Thomas Scheibel, Hans-Werner Schmidt: Learning from Nature : Synthesis and Characterization of Longitudinal Polymer Gradient Materials Inspired by Mussel Byssus Threads. In: Macromolecular Rapid Communications, 33 (2012). - S. 206-211.
doi:10.1002/marc.201100620

Kai U. Claußen, Thomas Scheibel, Hans-Werner Schmidt, Reiner Giesa: Polymer Gradient Materials : Can Nature Teach us New tricks?. In: Macromolecular Materials and Engineering, 297 (2012). - S. 938-957.
doi:10.1002/mame.201200032

Elad Elkayam, Claus-D. Kuhn, Ante Tocilj, Astrid D. Haase, Emily M. Greene, Gregory J. Hannon, Leemor Joshua-Tor: The structure of human argonaute-2 in complex with miR-20a. In: Cell, 150 (2012). - S. 100-110.
doi:10.1016/j.cell.2012.05.017

Jeremy E. Wilusz, Courtney K. JnBaptiste, Laura Y. Lu, Claus-D. Kuhn, Leemor Joshua-Tor, Phillip A. Sharp: A triple helix stabilizes the 3' ends of long noncoding RNAs that lack poly(A) tails. In: Genes & Development, 26 (2012). - S. 2392-2407.
doi:10.1101/gad.204438.112

2011

André Franz, Michael Orth, Paul A. Pirson, Remi Sonneville, J. Julian Blow, Anton Gartner, Olaf Stemmann, Thorsten Hoppe: CDC-48/p97 Coordinates CDT1 Degradation with GINS Chromatin Dissociation to Ensure Faithful DNA Replication. In: Molecular Cell, 44 (2011). - S. 85-96.
doi:10.1016/j.molcel.2011.08.028

Kristina Spieß, Roxana Ene, Caroline D. Keenan, Jürgen Senker, Friedrich Kremer, Thomas Scheibel: Impact of initial solvent on thermal stability and mechanical properties of recombinant spider silk films. In: Journal of Materials Chemistry, 21 (2011). - S. 13594-13604.
doi:10.1039/c1jm11700a

Anja Hagenau, Periklis Papadopoulos, Friedrich Kremer, Thomas Scheibel: Mussel collagen molecules with silk-like domains as load-bearing elements in distal byssal threads. In: Journal of Structural Biology, 175 (2011). - S. 339-347.
doi:10.1016/j.jsb.2011.05.016

Martin Humenik, Thomas Scheibel, Andrew M. Smith: Spider silk : understanding the structure-function relationship of a natural fiber. In: Progress in molecular biology and translational science, 103 (2011). - S. 131-185.
doi:10.1016/B978-0-12-415906-8.00007-8

Laura Schöckel, Martin Möckel, Bernd Mayer, Dominik Boos, Olaf Stemmann: Cleavage of cohesin rings coordinates the separation of centrioles and chromatids. In: Nature Cell Biology, 13 (2011). - S. 966-972.
doi:10.1038/ncb2280

Michael Orth, Bernd Mayer, Kinga Rehm, Ulli Rothweiler, Doris Heidmann, Tad A. Holak, Olaf Stemmann: Shugoshin is a Mad1/Cdc20-like interactor of Mad2. In: The EMBO Journal, 30 (2011). - S. 2868-2880.
doi:10.1038/emboj.2011.187

Kristin Schacht, Thomas Scheibel: Controlled Hydrogel Formation of a Recombinant Spider Silk Protein. In: Biomacromolecules, 12 (2011). - S. 2488-2495.
doi:10.1021/bm200154k

Eva Hormanseder, Thomas Tischer, Simone Heubes, Olaf Stemmann, Thomas U. Mayer: Non-proteolytic ubiquitylation counteracts the APC/C-inhibitory function of XErp1. In: EMBO Reports, 12 (2011). - S. 436-443.
doi:10.1038/embor.2011.32

Martin Humenik, Andrew M. Smith, Thomas Scheibel: Recombinant Spider Silks : Biopolymers with Potential for Future Applications. In: Polymers, 3 (2011). - S. 640-661.
doi:10.3390/polym3010640

Lukas Eisoldt, Andrew M. Smith, Thomas Scheibel: Decoding the secrets of spider silk. In: Materials Today, 14 (2011). - S. 80-86.
doi:10.1016/S1369-7021(11)70057-8

Andreas Lammel, Martin Schwab, Markus Hofer, Gerhard Winter, Thomas Scheibel: Recombinant spider silk particles as drug delivery vehicles. In: Biomaterials, 32 (2011). - S. 2233-2240.
doi:10.1016/j.biomaterials.2010.11.060

Franz Hagn, Christopher Thamm, Thomas Scheibel, Horst Kessler: pH-Dependent Dimerization and Salt-Dependent Stabilization of the N-terminal Domain of Spider Dragline Silk—Implications for Fiber Formation. In: Angewandte Chemie International Edition, 50 (2011). - S. 310-313.
doi:10.1002/anie.201003795

Franz Hagn, Christopher Thamm, Thomas Scheibel, Horst Kessler: PH-abhängige Dimerisierung und salzabhängige Stabilisierung der N-terminalen Domäne von Abseilfaden-Spinnenseide – Details zur Initiation des Assemblierungsprozesses. In: Angewandte Chemie, 123 (2011). - S. 324-328.
doi:10.1002/ange.201003795

2010

Markus Heim, Lin Römer, Thomas Scheibel: Hierarchical structures made of proteins. The complex architecture of spider webs and their constituent silk proteins. In: Chemical Society Reviews, 39 (2010). - S. 156-164.
doi:10.1039/B813273A

Kristina Spieß, Andreas Lammel, Thomas Scheibel: Recombinant Spider Silk Proteins for Applications in Biomaterials. In: Macromolecular Bioscience, 10 (2010). - S. 998-1007.
doi:10.1002/mabi.201000071

Kristina Spieß, Stefanie Wohlrab, Thomas Scheibel: Structural characterization and functionalization of engineered spider silk films. In: Soft Matter, 17 (2010). - S. 4168-4174.
doi:10.1039/b927267d

John G. Hardy, Thomas Scheibel: Composite materials based on silk proteins. In: Progress in Polymer Science, 35 (2010). - S. 1093-1115.
doi:10.1016/j.progpolymsci.2010.04.005

Thomas Scheibel: Spider silk : from nature to bio-inspired materials. In: Chemical Fibers International, 60 (2010). - S. 160-161.

Franz Hagn, Lukas Eisoldt, John G. Hardy, Charlotte Vendrely, Murray Coles, Thomas Scheibel, Horst Kessler: A conserved spider silk domain acts as a molecular switch that controls fibre assembly. In: Nature, 465 (2010). - S. 239-242.
doi:10.1038/nature08936

Lily Hui-Ching Wang, Bernd Mayer, Olaf Stemmann, Erich A. Nigg: Centromere DNA decatenation depends on cohesin removal and is required for mammalian cell division. In: Journal of Cell Science, 123 (2010). - S. 806-813.
doi:10.1242/jcs.058255

Andreas Lammel, Xioa Hu, Sang-Hyug Park, David L. Kaplan, Thomas Scheibel: Controlling silk fibroin particle features for drug delivery. In: Biomaterials, 31 (2010). - S. 4583-4591.
doi:10.1016/j.biomaterials.2010.02.024

Aldo Leal-Egaña, Thomas Scheibel: Silk-based materials for biomedical applications. In: Biotechnology and Applied Biochemistry, 55 (2010). - S. 155-167.
doi:10.1042/BA20090229

Anja Hagenau, Thomas Scheibel: Towards the Recombinant Production of Mussel Byssal Collagens. In: The Journal of Adhesion, 86 (2010). - S. 10-24.
doi:10.1080/00218460903417701

Markus Heim, Christian B. Ackerschott, Thomas Scheibel: Characterization of recombinantly produced spider flagelliform silk domains. In: Journal of Structural Biology, 170 (2010). - S. 420-425.
doi:10.1016/j.jsb.2009.12.025

Andrew M. Smith, Thomas Scheibel: Functional Amyloids Used by Organisms : a Lesson in Controlling Assembly. In: Macromolecular Chemistry and Physics, 211 (2010). - S. 127-135.
doi:10.1002/macp.200900420

Lukas Eisoldt, John G. Hardy, Markus Heim, Thomas Scheibel: The role of salt and shear on the storage and assembly of spider silk proteins. In: Journal of Structural Biology, 170 (2010). - S. 413-419.
doi:10.1016/j.jsb.2009.12.027

Thomas Scheibel: Basu, B. ; Katti, D. S. ; Kumar , A. (Hrsg.): Advanced Biomaterials, Weinheim, 2010. In:Macromolecular Bioscience, 10, S. 674: 2010
doi:10.1002/mabi.201000195

David Keerl, John G. Hardy, Thomas Scheibel: Biomimetic spinning of recombinant silk proteins. In: Roger Narayan (Hrsg.): Micro- and nanoscale processing of biomaterials : proceedings of Symposium VV. - Warrendale : MRS, 2010.
doi:10.1557/PROC-1239-VV07-20

2009

Michael H. Suhre, Simone Hess, Adrian V. Golser, Thomas Scheibel: Influence of divalent copper, manganese and zinc ions on fibril nucleation and elongation of the amyloid-like yeast prion determinant Sup35p-NM. In: Journal of Inorganic Biochemistry, 103 (2009). - S. 1711-1720.
doi:10.1016/j.jinorgbio.2009.09.021

Cyrille Vézy, Kevin D. Hermanson, Thomas Scheibel, Andreas R. Bausch: Interfacial rheological properties of recombinant spider-silk proteins. In: Biointerphases, 4 (2009). - S. 43.
doi:10.1116/1.3174930

Nobuaki R. Kudo, Martin Anger, Antoine H. Peters, Olaf Stemmann, Hans-Christian Theussl, Wolfgang Helmhart, Hiromi Kudo, Christa Heyting, Kim Nasmyth: Role of cleavage by separase of the Rec8 kleisin subunit of cohesin during mammalian meiosis I. In: Journal of Cell Science, 122 (2009). - S. 2686-2698.
doi:10.1242/jcs.035287

John G. Hardy, Thomas Scheibel: Silk-inspired polymers and proteins. In: Biochemical Society Transactions, 37 (2009). - S. 677-681.
doi:10.1042/BST0370677

John G. Hardy, Thomas Scheibel: Production and processing of spider silk proteins. In: Journal of Polymer Science Part A: Polymer Chemistry, 47 (2009). - S. 3957-3963.
doi:10.1002/pola.23484

Tobias Pirzer, Michael Geisler, Thomas Scheibel, Thorsten Hugel: Single molecule force measurements delineate salt, pH and surface effects on biopolymer adhesion. In: Physical Biology, 6 (2009). - .
doi:10.1088/1478-3975/6/2/025004

Ingo Grunwald, Klaus Rischka, Stefan M. Kast, Thomas Scheibel, Hendrik Bargel: Mimicking biopolymers on a molecular scale: nano(bio)technology based on engineered proteins. In: Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 367 (2009). - S. 1727-1747.
doi:10.1098/rsta.2009.0012

Markus Heim, David Keerl, Thomas Scheibel: Spider Silk: From Soluble Protein to Extraordinary Fiber. In: Angewandte Chemie International Edition, 48 (2009). - S. 3584-3596.
doi:10.1002/anie.200803341

Markus Heim, David Keerl, Thomas Scheibel: Spinnenseide: vom löslichen Protein zur außergewöhnlichen Faser. In: Angewandte Chemie, 121 (2009). - S. 3638-3650.
doi:10.1002/ange.200803341

Carmen Krammer, Dmitry Kryndushkin, Michael H. Suhre, Elisabeth Kremmer, Andreas Hofmann, Alexander Pfeifer, Thomas Scheibel, Reed B. Wickner, Hermann M. Schätzl, Ina M. Vorberg: The yeast Sup35NM domain propagates as a prion in mammalian cells. In: Proceedings of the National Academy of Sciences of the United States of America, 106 (2009). - S. 462-467.
doi:10.1073/pnas.0811571106

Thomas Scheibel: Spinnenseide - was Spiderman wissen sollte. In: BIOspektrum, 15 (2009). - S. 23-25.

Anja Hagenau, Holger A. Scheidt, Louise Serpell, Daniel Huster, Thomas Scheibel: Structural Analysis of Proteinaceous Components in Byssal Threads of the Mussel Mytilus galloprovincialis. In: Macromolecular Bioscience, 9 (2009). - S. 162-168.
doi:10.1002/mabi.200800271

Walter Krenkel, David Keerl, Felix Bauer, John G. Hardy, Ute Slotta, Thomas Scheibel: Verspinnen von Proteinfasern für technische Anwendungen. In: Walter Krenkel (Hrsg.): Verbundwerkstoffe : 17. Symposium Verbundwerkstoffe und Werkstoffverbunde. - Weinheim : Wiley-VCH, 2009. - S. 689-692.
doi:10.1002/9783527627110.ch97

2008

Lin Römer, Thomas Scheibel: The elaborate structure of spider silk : Structure and function of a natural high performance fiber. In: Prion, 2 (2008). - S. 154-161.

Ibtissem Nabti, Alexandra Reis, Mark Levasseur, Olaf Stemmann, Keith T. Jones: Securin and not CDK1/cyclin B1 regulates sister chromatid disjunction during meiosis II in mouse eggs. In: Developmental Biology, 321 (2008). - S. 379-386.
doi:10.1016/j.ydbio.2008.06.036

John G. Hardy, Lin Römer, Thomas Scheibel: Polymeric materials based on silk proteins. In: Polymer, 49 (2008). - S. 4309-4327.
doi:10.1016/j.polymer.2008.08.006

Ulli Rothweiler, Anna Czarna, Lutz Weber, Grzegorz M. Popowicz, Kinga Brongel, Kaja Kowalska, Michael Orth, Olaf Stemmann, Tad A. Holak: NMR screening for lead compounds using tryptophan-mutated proteins.. In: Journal of Medicinal Chemistry, 51 (2008). - S. 5035-5042.
doi:10.1021/jm8002813

Henrik Daub, Jesper V. Olsen, Michaela Bairlein, Florian Gnad, Felix S. Oppermann, Roman Korner, Zoltán Greff, György Keri, Olaf Stemmann, Matthias Mann: Kinase-selective enrichment enables quantitative phosphoproteomics of the kinome across the cell cycle. In: Molecular Cell, 31 (2008). - S. 438-448.
doi:10.1016/j.molcel.2008.07.007

Uwe Weidenauer, Thomas Scheibel: Spinnenseidenproteine als pharmazeutischer Hilfsstoff. In: Deutsche Apotheker-Zeitung, 148 (2008). - S. 3152-3154.

Ute Slotta, Sebastian Rammensee, Stanislav Gorb, Thomas Scheibel: An Engineered Spider Silk Protein Forms Microspheres. In: Angewandte Chemie International Edition, 47 (2008). - S. 4592-4594.
doi:10.1002/anie.200800683

Ute Slotta, Sebastian Rammensee, Stanislav Gorb, Thomas Scheibel: Bildung von Mikrokugeln eines rekombinanten Spinnenseidenproteins. In: Angewandte Chemie, 120 (2008). - S. 4668-4670.
doi:10.1002/ange.200800683

Andreas Lammel, Martin Schwab, Ute Slotta, Gerhard Winter, Thomas Scheibel: Processing conditions for the formation of spider silk microspheres. In: ChemSusChem, 1 (2008). - S. 413-416.
doi:10.1002/cssc.200800030

Lin Römer, Thomas Scheibel: Spinnen wie die Spinnen. In: Nachrichten aus der Chemie, 56 (2008). - S. 516-519.
doi:10.1002/nadc.200854733

Burkhard Liebmann, Daniel Hümmerich, Thomas Scheibel, Marcus Fehr: Formulation of poorly water-soluble substances using self-assembling spider silk protein. In: Colloids and Surfaces A : Physicochemical and Engineering Aspects, 331 (2008). - S. 126-132.
doi:10.1016/j.colsurfa.2008.04.005

Sebastian Rammensee, Ute Slotta, Thomas Scheibel, Andreas R. Bausch: Assembly mechanism of recombinant spider silk proteins. In: Proceedings of the National Academy of Sciences of the United States of America, 105 (2008). - S. 6590-6595.
doi:10.1073/pnas.0709246105

Dominik Horinek, A. Serr, Markus Geisler, Tobias Pirzer, Ute Slotta, Simon Q. Lud, J. A. Garrido, Thomas Scheibel, Thorsten Hugel, Roland R. Netz: Peptide adsorption on a hydrophobic surface results from an interplay of solvation, surface, and intrapeptide forces. In: Proceedings of the National Academy of Sciences of the United States of America, 105 (2008). - S. 2842-2847.
doi:10.1073/pnas.0707879105

Dominik Boos, Christian Kuffer, Rene Lenobel, Roman Korner, Olaf Stemmann: Phosphorylation-dependent binding of cyclin B1 to a Cdc6-like domain of human separase. In: The Journal of Biological Chemistry, 283 (2008). - S. 816-823.
doi:10.1074/jbc.M706748200

Sebastian R. Geiger, Claus-D. Kuhn, Christoph Leidig, Jörg Renkawitz, Patrick Cramer: Crystallization of RNA polymerase I subcomplex A14/A43 by iterative prediction, probing and removal of flexible regions. In: Acta Crystallographica Section F, 64 (2008). - S. 413-418.
doi:10.1107/S174430910800972X

Michael Geisler, Tobias Pirzer, Christian B. Ackerschott, Simon Q. Lud, Jose Garrido, Thomas Scheibel, Thorsten Hugel: Hydrophobic and Hofmeister Effects on the Adhesion of Spider Silk Proteins onto Solid Substrates:  An AFM-Based Single-Molecule Study. In: Langmuir, 24 (2008). - S. 1350-1355.
doi:10.1021/la702341j

Charlotte Vendrely, Christian B. Ackerschott, Lin Römer, Thomas Scheibel: Molecular design of performance proteins with repetitive sequences: recombinant flagelliform spider silk as basis for biomaterials.. In: Methods in Molecular Biology, 474 (2008). - S. 3-14.
doi:10.1007/978-1-59745-480-3_1

Carmen Krammer, Michael H. Suhre, Elisabeth Kremmer, Claudia Diemer, Simone Hess, Hermann M. Schätzl, Thomas Scheibel, Ina M. Vorberg: Prion protein/protein interactions: fusion with yeast Sup35p-NM modulates cytosolic PrP aggregation in mammalian cells. In: The FASEB Journal, 22 (2008). - S. 762-773.
doi:10.1096/fj.07-8733com

Andreas Lammel, David Keerl, Lin Römer, Thomas Scheibel: Proteins: Polymers of natural origin. In: Jie Hu (Hrsg.): Recent Advances in Biomaterials Research. - Trivandrum : Transworld Research Network, 2008. - S. 1.

Jochen Gerber, Alarich Reiter, Robert Steinbauer, Stefan Jakob, Claus-D. Kuhn, Patrick Cramer, Joachim Griesenbeck, Philipp Milkereit, Herbert Tschochner: Site specific phosphorylation of yeast RNA polymerase I. In: Nucleic Acids Research, 36 (2008). - S. 793-802.
doi:10.1093/nar/gkm1093

Patrick Cramer, Karim J. Armache, Sonja Baumli, Stefan Benkert, Florian Brueckner, Claudia Buchen, Gerke E. Damsma, Stefan Dengl, Sebastian R. Geiger, Anja J. Jasiak, Anass Jawhari, Stefan Jennebach, Tomislav Kamenski, Hubert Kettenberger, Claus-D. Kuhn, Elisabeth Lehmann, Kristin Leike, Jasmin F. Sydow, Alessandro Vannini: Structure of eukaryotic RNA polymerases. In: Annual Review of Biophysics, 37 (2008). - S. 337-352.
doi:10.1146/annurev.biophys.37.032807.130008

2007

Simone Hess, Susan L. Lindquist, Thomas Scheibel: Alternative assembly pathways of the amyloidogenic yeast prion determinant Sup35–NM. In: EMBO Reports, 8 (2007). - S. 1196-1201.
doi:10.1038/sj.embor.7401096

Dong Jijun, Jesse Bloom, Vladimir Goncharov, Madhuri Chattopadhyay, Glenn L. Millhauser, David G. Lynn, Thomas Scheibel, Susan L. Lindquist: Probing the Role of PrP Repeats in Conformational Conversion and Amyloid Assembly of Chimeric Yeast Prions. In: The Journal of Biological Chemistry, 282 (2007). - S. 34204-34212.
doi:10.1074/jbc.M704952200

Thomas Scheibel, Lin Römer, Kristina Spieß: Transparente Folien aus Spinnenseide. In: GIT : Labor-Fachzeitschrift, 51 (2007). - S. 928-931.

Ezzeldin Metwalli, Ute Slotta, C. Darko, Stephan V. Roth, Thomas Scheibel, C. M. Papadakis: Structural changes of thin films from recombinant spider silk proteins upon post-treatment. In: Applied Physics A, 89 (2007). - S. 655-661.
doi:10.1007/s00339-007-4265-5

Andrew J. Holland, Franziska Böttger, Olaf Stemmann, Stephen S. Taylor: Protein phosphatase 2A and separase form a complex regulated by separase autocleavage. In: The Journal of Biological Chemistry, 282 (2007). - S. 24623-24632.
doi:10.1074/jbc.M702545200

Kevin D. Hermanson, Daniel Hümmerich, Thomas Scheibel, Andreas R. Bausch: Engineered Microcapsules Fabricated from Reconstituted Spider Silk. In: Advanced Materials, 19 (2007). - S. 1810-1815.
doi:10.1002/adma.200602709

Josef H. Exler, Daniel Hümmerich, Thomas Scheibel: The Amphiphilic Properties of Spider Silks Are Important for Spinning. In: Angewandte Chemie International Edition, 46 (2007). - S. 3559-3562.
doi:10.1002/anie.200604718

Charlotte Vendrely, Thomas Scheibel: Biotechnological Production of Spider-Silk Proteins Enables New Applications. In: Macromolecular Bioscience, 7 (2007). - S. 401-409.
doi:10.1002/mabi.200600255

Simone Heubes, Olaf Stemmann: The AAA-ATPase p97Ufd1/Npl4 Is Required for ERAD but Not for Spindle Disassembly in Xenopus Egg Extracts. In: Journal of Cell Science, 120 (2007). - S. 1325-1329.
doi:10.1242/jcs.006924

Ute Slotta, Simone Hess, Kristina Spieß, Thusnelda Stromer, Louise Serpell, Thomas Scheibel: Spider Silk and Amyloid Fibrils : A Structural Comparison. In: Macromolecular Bioscience, 7 (2007). - S. 183-188.
doi:10.1002/mabi.200600201

Josef H. Exler, Daniel Hümmerich, Thomas Scheibel: Die amphiphilen Eigenschaften von Spinnenseidenproteinen sind entscheidend für ihr Verspinnen. In: Angewandte Chemie, 119 (2007). - S. 3629-3632.
doi:10.1002/ange.200604718

Martin Schmidt, Lin Römer, Martin Strehle, Thomas Scheibel: Conquering isoleucine auxotrophy of Escherichia coli BLR(DE3) to recombinantly produce spider silk proteins in minimal media. In: Biotechnology Letters, 29 (2007). - S. 1741-1744.
doi:10.1007/s10529-007-9461-z

Grit Lodderstedt, Simone Hess, Gerd Hause, Till Scheuermann, Thomas Scheibel, Elisabeth Schwarz: Effect of oculopharyngeal muscular dystrophy-associated extension of seven alanines on the fibrillation properties of the N-terminal domain of PABPN1. In: The FEBS Journal, 274 (2007). - S. 346-355.
doi:10.1111/j.1742-4658.2006.05595.x

Claus-D. Kuhn, Sebastian R. Geiger, Sonja Baumli, Marco Gartmann, Jochen Gerber, Stefan Jennebach, Thorsten Mielke, Herbert Tschochner, Roland Beckmann, Patrick Cramer: Functional architecture of RNA polymerase I. In: Cell, 131 (2007). - S. 1260-1272.
doi:10.1016/j.cell.2007.10.051

Kevin D. Hermanson, Markus B. Harasim, Thomas Scheibel, Andreas R. Bausch: Permeability of silk microcapsules made by the interfacial adsorption of protein. In: Physical Chemistry Chemical Physics, 9 (2007). - S. 6442-6446.
doi:10.1039/B709808A

Lin Römer, Thomas Scheibel: Spinnenseidenproteine: Grundlage für neue Materialien. In: Chemie in unserer Zeit, 41 (2007). - S. 306-314.
doi:10.1002/ciuz.200700410

2006

Thomas Scheibel: Silk : a biomaterial with several facets. In: Applied Physics A, 82 (2006). - S. 191-192.
doi:10.1007/s00339-005-3434-7

Ingo H. Gorr, Alexandra Reis, Dominik Boos, Martin Wühr, Suzanne Madgwick, Keith T. Jones, Olaf Stemmann: Essential Cdk1-inhibitory role for separase during meiosis I in vertebrate oocytes. In: Nature Cell Biology, 8 (2006). - S. 1035-1037.
doi:10.1038/ncb1467

Shashi Bhushan, Claus-D. Kuhn, Anna-Karin Berglund, Christian Roth, Elzbieta Glaser: The role of the N-terminal domain of chloroplast targeting peptides in organellar protein import and miss-sorting. In: FEBS Letters, 580 (2006). - S. 3966-3972.
doi:10.1016/j.febslet.2006.06.018

Olaf Stemmann, Dominik Boos, Ingo H. Gorr: Anaphase Topsy-Turvy : Cdk1 a securin, separase a CKI. In: Cell Cycle, 5 (2006). - S. 11-13.
doi:10.4161/cc.5.1.2296

Sayam Sen Gupta, Thomas Scheibel: Folding, self-assembly and conformational switches of proteins. In: Joseph P. Zbilut, Thomas Scheibel (Hrsg.): Protein Folding-Misfolding : Some Current Concepts of Protein Chemistry. - New York : Nova Science Publishers, 2006. - S. 1-13.

Charlotte Vendrely, Thomas Scheibel: Mammalian versus yeast prions : biophysical insights in structure and assembly mechanisms. In: Bridgette V. Doupher (Hrsg.): Prions : New Research. - New York : Nova Science Publishers, 2006. - S. 251-284.

F. Junghans, M. Morawietz, U. Conrad, Thomas Scheibel, A. Heilmann, U. Spohn: Preparation and mechanical properties of layers made of recombinant spider silk proteins and silk from silk worm. In: Applied Physics A, 82 (2006). - S. 253-260.
doi:10.1007/s00339-005-3432-9

Daniel Hümmerich, Ute Slotta, Thomas Scheibel: Processing and modification of films made from recombinant spider silk proteins. In: Applied Physics A, 82 (2006). - S. 219-222.
doi:10.1007/s00339-005-3428-5

Johannes Buchner, Thomas Scheibel: Protein Aggregation as a Cause for Disease. In: Br. K. Starke, Matthias Gaestel (Hrsg.): Molecular chaperones in Health and Disease. - Berlin : Springer, 2006. - S. 199-219.
doi:10.1007/3-540-29717-0_9

Sebastian Rammensee, Daniel Hümmerich, Kevin D. Hermanson, Thomas Scheibel, Andreas R. Bausch: Rheological characterization of hydrogels formed by recombinantly produced spider silk. In: Applied Physics A, 82 (2006). - S. 261-264.
doi:10.1007/s00339-005-3431-x

Joseph P. Zbilut, Thomas Scheibel, Daniel Hümmerich, Charles L. Webber Jr., Mauro Colafranceschi, Alessandro Giuliani: Statistical approaches for investigating silk properties. In: Applied Physics A, 82 (2006). - S. 243-251.
doi:10.1007/s00339-005-3429-4

Ute Slotta, Michael Tammer, Friedrich Kremer, Patrick Koelsch, Thomas Scheibel: Structural Analysis of Spider Silk Films. In: Supramolecular Chemistry, 18 (2006). - S. 465-471.
doi:10.1080/10610270600832042

2005

Katrin Pfleghaar, Simone Heubes, Jürgen Cox, Olaf Stemmann, Michael R. Speicher: Securin Is Not Required for Chromosomal Stability in Human Cells. In: PLoS Biology, 3 (2005). - S. 0030416.
doi:10.1371/journal.pbio.0030416

Thomas Scheibel: Protein fibers as performance proteins: new technologies and applications.. In: Current Opinion in Biotechnology, 16 (2005). - S. 427-433.
doi:10.1016/j.copbio.2005.05.005

Ingo H. Gorr, Dominik Boos, Olaf Stemmann: Mutual Inhibition of Separase and Cdk1 by Two-Step Complex Formation. In: Molecular Cell, 19 (2005). - S. 135-141.
doi:10.1016/j.molcel.2005.05.022

Hector Viadiu, Olaf Stemmann, Marc W. Kirschner, Thomas Walz: Domain structure of separase and its binding to securin as determined by EM. In: Nature Structural & Molecular Biology, 12 (2005). - S. 552-553.
doi:10.1038/nsmb935

Olaf Stemmann, Dominik Boos, Ingo H. Gorr: Rephrasing anaphase : Separase FEARs shugoshin. In: Chromosoma, 113 (2005). - S. 409-417.
doi:10.1007/s00412-005-0331-y

Andreas Junger, Doris Kaufmann, Thomas Scheibel, Ralf Weberskirch: Biosynthesis of an Elastin-Mimetic Polypeptide with Two Different Chemical Functional Groups within the Repetitive Elastin Fragment. In: Macromolecular Bioscience, 5 (2005). - S. 494-501.
doi:10.1002/mabi.200400213

Thomas Scheibel, Louise Serpell: Physical Methods for Studies of Fiber Formation and Structure. In: Johannes Buchner, Thomas Kiefhaber (Hrsg.): Protein folding handbook. Band 1. - Weinheim : Wiley-VCH, 2005. - S. 193-248.
doi:10.1002/9783527619498.ch39

Joseph P. Zbilut, Thomas Scheibel, Daniel Hümmerich, Charles L. Webber Jr., Mauro Colafranceschi, Alessandro Giuliani: Spatial stochastic resonance in protein hydrophobicity. In: Physics Letters A, 346 (2005). - S. 33-41.
doi:10.1016/j.physleta.2005.07.072

2004

Daniel Hümmerich, Thomas Scheibel, Fritz Vollrath, Shulamit Cohen, Uri Gat, Shmulik Ittah: Novel Assembly Properties of Recombinant Spider Dragline Silk Proteins. In: Current Biology, 14 (2004). - S. 2070-2074.
doi:10.1016/j.cub.2004.11.005

Thomas Scheibel: Spider silks: recombinant synthesis, assembly, spinning, and engineering of synthetic proteins. In: Microbial Cell Factories, 3 (2004). - .
doi:10.1186/1475-2859-3-14

Daniel Hümmerich, Christopher W. Helsen, Susanne Quedzuweit, Jan Oschmann, Rainer Rudolph, Thomas Scheibel: Primary Structure Elements of Spider Dragline Silks and Their Contribution to Protein Solubility. In: Biochemistry, 43 (2004). - S. 13604-13612.
doi:10.1021/bi048983q

Thomas Scheibel, Johannes Buchner: Book Review: Methods in Molecular Biology, Vol. 232: Protein Misfolding and Disease: Principles and Methods. Edited by Peter Bross and Niels Gregerson. In: ChemBioChem, 5 (2004). - S. 1154-1155.
doi:10.1002/cbic.200300144

Thomas Scheibel, Jesse Bloom, Susan L. Lindquist: The elongation of yeast prion fibers involves separable steps of association and conversion. In: Proceedings of the National Academy of Sciences of the United States of America, 101 (2004). - S. 2287-2292.
doi:10.1073/pnas.0308754101

Thomas Scheibel: Amyloid formation of a yeast prion determinant. In: Journal of Molecular Neuroscience, 23 (2004). - S. 13-22.
doi:10.1385/JMN:23:1-2:013

2003

Scott A. Gerber, John Rusch, Olaf Stemmann, Marc W. Kirschner, Steven P. Gygi: Absolute quantification of proteins and phosphoproteins from cell lysates by tandem MS. In: Proceedings of the National Academy of Sciences of the United States of America, 100 (2003). - S. 6940-6945.
doi:10.1073/pnas.0832254100

Thomas Scheibel, Raghuveer Parthasarthy, George Sawicki, Xiao-Min Lin, Susan L. Lindquist: Conducting nanowires built by controlled self-assembly of amyloid fibers and selective metal deposition. In: Proceedings of the National Academy of Sciences of the United States of America, 100 (2003). - S. 4527-4532.
doi:10.1073/pnas.0431081100

2002

Hui Zou, Olaf Stemmann, Jens S. Anderson, Matthias Mann, Marc W. Kirschner: Anaphase specific auto-cleavage of separase. In: FEBS Letters, 528 (2002). - S. 246-250.
doi:10.1016/S0014-5793(02)03238-6

Olaf Stemmann, Anke Neidig, Thomas Köcher, Matthias Wilm, Johannes Lechner: Hsp90 enables Ctf13p/Skp1p to nucleate the budding yeast kinetochore. In: Proceedings of the National Academy of Sciences of the United States of America, 99 (2002). - S. 8585-8590.
doi:10.1073/pnas.082223899

2001

Olaf Stemmann, Hui Zou, Scott A. Gerber, Steven P. Gygi, Marc W. Kirschner: Dual inhibition of sister chromatid separation at metaphase. In: Cell, 107 (2001). - S. 715-726.
doi:10.1016/S0092-8674(01)00603-1

Thomas Scheibel, Susan L. Lindquist: The role of conformational flexibility in prion propagation and maintenance for Sup35p. In: Nature Structural Biology, 8 (2001). - S. 958-962.
doi:10.1038/nsb1101-958

Thomas Scheibel, Anthony S. Kowal, Jesse Bloom, Susan L. Lindquist: Bidirectional amyloid fiber growth for a yeast prion determinant. In: Current Biology, 11 (2001). - S. 366-369.
doi:10.1016/S0960-9822(01)00099-9

1999

Jennifer Ortiz, Olaf Stemmann, Simone Rank, Johannes Lechner: A putative protein complex consisting of Ctf19, Mcm21, and Okp1 represents a missing link in the budding yeast kinetochore. In: Genes & Development, 13 (1999). - S. 1140-1155.

Lía I. Pietrasanta, Douglas Thrower, Wan Hsieh, Shashirekha Rao, Olaf Stemmann, Johannes Lechner, John Carbon, Helen Hansma: Probing the Saccharomyces cerevisiae centromeric DNA (CEN DNA)-binding factor 3 (CBF3) kinetochore complex by using atomic force microscopy. In: Proceedings of the National Academy of Sciences of the United States of America, 96 (1999). - S. 3757-3762.
doi:10.1073/pnas.96.7.3757

Thomas Scheibel, Tina Weikl, Ronald Rimerman, David Smith, Susan L. Lindquist, Johannes Buchner: Contribution of N- and C-terminal domains to the function of Hsp90 in Saccharomyces cerevisiae. In: Molecular microbiology, 34 (1999). - S. 701-713.
doi:10.1046/j.1365-2958.1999.01632.x

Thomas Scheibel, Heiko Ingo Siegmund, Rainer Jaenicke, Peter Ganz, Hauke Lilie, Johannes Buchner: The charged region of Hsp90 modulates the function of the N-terminal domain. In: Proceedings of the National Academy of Sciences of the United States of America, 96 (1999). - S. 1297-1302.
doi:10.1073/pnas.96.4.1297

1998

Alfons Nichtl, Johannes Buchner, Rainer Jaenicke, Rainer Rudolph, Thomas Scheibel: Folding and association of β-galactosidase. In: Journal of Molecular Biology, 282 (1998). - S. 1083-1091.
doi:10.1006/jmbi.1998.2075

Thomas Scheibel, Johannes Buchner: The Hsp90 Complex : A Super-Chaperone Machine as a Novel Drug Target. In: Biochemical Pharmacology, 56 (1998). - S. 675-682.
doi:10.1016/S0006-2952(98)00120-8

Thomas Scheibel, Tina Weikl, Johannes Buchner: Two chaperone sites in Hsp90 differing in substrate specificity and ATP dependence. In: Proceedings of the National Academy of Sciences of the United States of America, 95 (1998). - S. 1495-1499.

1997

Thomas Scheibel, Stefan Bell, Stefan Walke: S. cerevisiae and sulfur: a unique way to deal with the environment. In: The FASEB Journal, 11 (1997). - S. 917-921.

Thomas Scheibel, Sonja Neuhofen, Tanja Weikl, Christian Mayr, Jochen Reinstein, Pia D. Vogel, Johannes Buchner: ATP-binding Properties of Human Hsp90. In: The Journal of Biological Chemistry, 272 (1997). - S. 18608-18613.
doi:10.1074/jbc.272.30.18608

Thomas Scheibel, Johannes Buchner: The HsP90 Family : an overview. In: Mary-Jane Gething (Hrsg.): Guidebooks to Molecular Chaperones and Protein-Folding Catalysts. - New York : Oxford University Press, 1997. - S. 147-151.

1996

Olaf Stemmann, Johannes Lechner: The Saccharomyces cerevisiae kinetochore contains a cyclin-CDK complexing homologue, as identified by in vitro reconstitution. In: The EMBO Journal, 15 (1996). - S. 3611-3620.

Ursula Jakob, Thomas Scheibel, Suchira Bose, Jochen Reinstein, Johannes Buchner: Assessment of the ATP Binding Properties of Hsp90. In: The Journal of Biological Chemistry, 271 (1996). - S. 10035-10041.
doi:10.1074/jbc.271.17.10035

I. Brikun, K. Suziedelis, Olaf Stemmann, R. Zhong, L. Alikhanian, E. Linkova, A. Mironov, D. E. Berg: Analysis of CRP-CytR interactions at the Escherichia coli udp promoter. In: Journal of Bacteriology, 178 (1996). - S. 1614-1622.

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