Direct observation of an ensemble of stable collapsed states in the mechanical folding of ubiquitin
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S. Garcia-Manyes | L. Dougan | Julio M. Fernandez | Jasna Brujic | Sergi Garcia-Manyes | Julio M Fernández | Carmen L Badilla | Carmen L. Badilla | Lorna Dougan | J. Brujic
[1] K. Kuwajima,et al. The molten globule state as a clue for understanding the folding and cooperativity of globular‐protein structure , 1989, Proteins.
[2] Julio M Fernandez,et al. Force-Clamp Spectroscopy Monitors the Folding Trajectory of a Single Protein , 2004, Science.
[3] C L Brooks,et al. Taking a Walk on a Landscape , 2001, Science.
[4] O. Ptitsyn,et al. Evidence for a molten globule state as a general intermediate in protein folding , 1990, FEBS letters.
[5] M. Rief,et al. Direct observation of active protein folding using lock-in force spectroscopy. , 2007, Biophysical journal.
[6] V S Pande,et al. Is the molten globule a third phase of proteins? , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[7] N. Go,et al. Respective roles of short- and long-range interactions in protein folding. , 1978, Proceedings of the National Academy of Sciences of the United States of America.
[8] M. Karplus,et al. How does a protein fold? , 1994, Nature.
[9] R. Baldwin. Matching speed and stability , 1994, Nature.
[10] Julio M Fernandez,et al. Single-molecule force spectroscopy reveals signatures of glassy dynamics in the energy landscape of ubiquitin , 2006 .
[11] Hector H. Huang,et al. Contour length and refolding rate of a small protein controlled by engineered disulfide bonds. , 2007, Biophysical journal.
[12] Siegfried Labeit,et al. Titins: Giant Proteins in Charge of Muscle Ultrastructure and Elasticity , 1995, Science.
[13] J. Clarke,et al. Mechanical and chemical unfolding of a single protein: a comparison. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[14] Julio M Fernandez,et al. Dwell-time distribution analysis of polyprotein unfolding using force-clamp spectroscopy. , 2007, Biophysical journal.
[15] J. Onuchic,et al. Theory of Protein Folding This Review Comes from a Themed Issue on Folding and Binding Edited Basic Concepts Perfect Funnel Landscapes and Common Features of Folding Mechanisms , 2022 .
[16] P. Wolynes,et al. Spin glasses and the statistical mechanics of protein folding. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[17] M Karplus,et al. "New view" of protein folding reconciled with the old through multiple unfolding simulations. , 1997, Science.
[18] Thirumalai,et al. Minimum energy compact structures of random sequences of heteropolymers. , 1993, Physical review letters.
[19] P. Wolynes,et al. Self-consistently optimized energy functions for protein structure prediction by molecular dynamics. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[20] K Yue,et al. Forces of tertiary structural organization in globular proteins. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[21] R. Baldwin. Protein folding. Matching speed and stability. , 1994, Nature.
[22] J. Szulmajster. Protein folding , 1988, Bioscience reports.
[23] Peter G. Wolynes,et al. A simple statistical field theory of heteropolymer collapse with application to protein folding , 1990 .
[24] S. Garcia-Manyes,et al. Force-clamp spectroscopy of single-protein monomers reveals the individual unfolding and folding pathways of I27 and ubiquitin. , 2007, Biophysical journal.
[25] Everett A Lipman,et al. Single-Molecule Measurement of Protein Folding Kinetics , 2003, Science.
[26] D. Thirumalai,et al. Metastability of the folded states of globular proteins. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[27] Carlos Bustamante,et al. Direct Observation of the Three-State Folding of a Single Protein Molecule , 2005, Science.
[28] Gerhard Hummer,et al. Intrinsic rates and activation free energies from single-molecule pulling experiments. , 2006, Physical review letters.
[29] Hongbin Li,et al. Response to Comment on "Force-Clamp Spectroscopy Monitors the Folding Trajectory of a Single Protein" , 2004, Science.
[30] S. Jackson,et al. Is an intermediate state populated on the folding pathway of ubiquitin? , 2004, FEBS letters.
[31] M. Karplus,et al. Interpreting the folding kinetics of helical proteins , 1999, Nature.
[32] W. Eaton,et al. Protein folding studied by single-molecule FRET. , 2008, Current opinion in structural biology.
[33] D. Thirumalai,et al. From Minimal Models to Real Proteins: Time Scales for Protein Folding Kinetics , 1995 .
[34] Stochastic dynamics and pattern formation in biological and complex systems : the APCTP conference Seoul, Korea July 1999 , 2000 .
[35] K. Dill,et al. From Levinthal to pathways to funnels , 1997, Nature Structural Biology.
[36] Mapping the energy landscape of biomolecules using single molecule force correlation spectroscopy: theory and applications. , 2006, Biophysical journal.
[37] Wolfgang A. Linke,et al. Reverse engineering of the giant muscle protein titin , 2002, Nature.
[38] M. Fisher,et al. Configuration and Free Energy of a Polymer Molecule with Solvent Interaction , 1961 .
[39] P. Wolynes,et al. Intermediates and barrier crossing in a random energy model , 1989 .
[40] D Thirumalai,et al. Kinetics and thermodynamics of folding in model proteins. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[41] Qing Huo Liu,et al. Response to “Comment on ‘The complete Schwarzschild interior and exterior solution in the harmonic coordinate system’ ” [J. Math. Phys. 40, 4177 (1999)] , 1999 .
[42] W. Eaton,et al. Probing the free-energy surface for protein folding with single-molecule fluorescence spectroscopy , 2002, Nature.
[43] Juan Liu,et al. Respective roles of short-and long-range interactions in protein folding , 2004, Wuhan University Journal of Natural Sciences.
[44] M. Searle,et al. Population of on-pathway intermediates in the folding of ubiquitin. , 2006, Journal of molecular biology.
[45] P. Gennes. Kinetics of collapse for a flexible coil , 1985 .
[46] B. Berne,et al. Signatures of hydrophobic collapse in extended proteins captured with force spectroscopy , 2007, Proceedings of the National Academy of Sciences.
[47] E. Rhoades,et al. Watching proteins fold one molecule at a time , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[48] Hongbin Li,et al. The unfolding kinetics of ubiquitin captured with single-molecule force-clamp techniques. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[49] Simon Mitternacht,et al. Dissecting the mechanical unfolding of ubiquitin. , 2005, Proceedings of the National Academy of Sciences of the United States of America.