The protein folding problem KA Dill, SB Ozkan, MS Shell, TR Weikl Annu. Rev. Biophys. 37, 289-316, 2008 | 1395 | 2008 |
Constructing the equilibrium ensemble of folding pathways from short off-equilibrium simulations F Noé, C Schütte, E Vanden-Eijnden, L Reich, TR Weikl Proceedings of the National Academy of Sciences 106 (45), 19011-19016, 2009 | 883 | 2009 |
The protein folding problem: when will it be solved? KA Dill, SB Ozkan, TR Weikl, JD Chodera, VA Voelz Current opinion in structural biology 17 (3), 342-346, 2007 | 351 | 2007 |
The 2018 biomembrane curvature and remodeling roadmap P Bassereau, R Jin, T Baumgart, M Deserno, R Dimova, VA Frolov, ... Journal of Physics D: Applied Physics 51 (34), 343001, 2018 | 229 | 2018 |
Wrapping of nanoparticles by membranes AH Bahrami, M Raatz, J Agudo-Canalejo, R Michel, EM Curtis, CK Hall, ... Advances in colloid and interface science 208, 214-224, 2014 | 220 | 2014 |
Interaction of conical membrane inclusions: Effect of lateral tension TR Weikl, MM Kozlov, W Helfrich Physical Review E 57 (6), 6988, 1998 | 200 | 1998 |
Selected‐fit versus induced‐fit protein binding: Kinetic differences and mutational analysis TR Weikl, C von Deuster Proteins: Structure, Function, and Bioinformatics 75 (1), 104-110, 2009 | 199 | 2009 |
Tubulation and aggregation of spherical nanoparticles adsorbed on vesicles AH Bahrami, R Lipowsky, TR Weikl Physical review letters 109 (18), 188102, 2012 | 172 | 2012 |
Binding constants of membrane-anchored receptors and ligands depend strongly on the nanoscale roughness of membranes J Hu, R Lipowsky, TR Weikl Proceedings of the National Academy of Sciences 110 (38), 15283-15288, 2013 | 147 | 2013 |
Protein-peptide association kinetics beyond the seconds timescale from atomistic simulations F Paul, C Wehmeyer, ET Abualrous, H Wu, MD Crabtree, J Schöneberg, ... Nature Communications 8 (1), 1095, 2017 | 144 | 2017 |
Conformational selection in protein binding and function TR Weikl, F Paul Protein Science 23 (11), 1508-1518, 2014 | 142 | 2014 |
Pattern formation during T-cell adhesion TR Weikl, R Lipowsky Biophysical journal 87 (6), 3665-3678, 2004 | 133 | 2004 |
Adhesion of membranes via receptor–ligand complexes: Domain formation, binding cooperativity, and active processes TR Weikl, M Asfaw, H Krobath, B Różycki, R Lipowsky Soft Matter 5 (17), 3213-3224, 2009 | 122 | 2009 |
Folding rates and low-entropy-loss routes of two-state proteins TR Weikl, KA Dill Journal of molecular biology 329 (3), 585-598, 2003 | 116 | 2003 |
How to distinguish conformational selection and induced fit based on chemical relaxation rates F Paul, TR Weikl PLoS Comput Biol 12 (9), e1005067, 2016 | 100 | 2016 |
Cooperativity in two‐state protein folding kinetics TR Weikl, M Palassini, KA Dill Protein Science 13 (3), 822-829, 2004 | 92 | 2004 |
Vesicles with multiple membrane domains J Hu, T Weikl, R Lipowsky Soft Matter 7 (13), 6092-6102, 2011 | 86 | 2011 |
Binding cooperativity of membrane adhesion receptors H Krobath, B Różycki, R Lipowsky, TR Weikl Soft Matter 5 (17), 3354-3361, 2009 | 86 | 2009 |
Cooperative wrapping of nanoparticles by membrane tubes M Raatz, R Lipowsky, TR Weikl Soft Matter 10 (20), 3570-3577, 2014 | 84 | 2014 |
Adhesion-induced phase behavior of multicomponent membranes TR Weikl, R Lipowsky Physical Review E 64 (1), 011903, 2001 | 80 | 2001 |