Trp zipper folding kinetics by molecular dynamics and temperature-jump spectroscopy
- 12 March 2004
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (12) , 4077-4082
- https://doi.org/10.1073/pnas.0305260101
Abstract
We studied the microsecond folding dynamics of three beta hairpins (Trp zippers 1-3, TZ1-TZ3) by using temperature-jump fluorescence and atomistic molecular dynamics in implicit solvent. In addition, we studied TZ2 by using time-resolved IR spectroscopy. By using distributed computing, we obtained an aggregate simulation time of 22 ms. The simulations included 150, 212, and 48 folding events at room temperature for TZ1, TZ2, and TZ3, respectively. The all-atom optimized potentials for liquid simulations (OPLS(aa)) potential set predicted TZ1 and TZ2 properties well; the estimated folding rates agreed with the experimentally determined folding rates and native conformations were the global potential-energy minimum. The simulations also predicted reasonable unfolding activation enthalpies. This work, directly comparing large simulated folding ensembles with multiple spectroscopic probes, revealed both the surprising predictive ability of current models as well as their shortcomings. Specifically, for TZ1-TZ3, OPLS for united atom models had a nonnative free-energy minimum, and the folding rate for OPLS(aa) TZ3 was sensitive to the initial conformation. Finally, we characterized the transition state; all TZs fold by means of similar, native-like transition-state conformations.Keywords
This publication has 39 references indexed in Scilit:
- Experimental Tests of Villin Subdomain Folding SimulationsJournal of Molecular Biology, 2003
- Dynamic NMR Line-Shape Analysis Demonstrates that the Villin Headpiece Subdomain Folds on the Microsecond Time ScaleJournal of the American Chemical Society, 2003
- Absolute comparison of simulated and experimental protein-folding dynamicsNature, 2002
- β-hairpin folding simulations in atomistic detail using an implicit solvent model 1 1Edited by F. CohenJournal of Molecular Biology, 2001
- Mathematical Analysis of Coupled Parallel SimulationsPhysical Review Letters, 2001
- Τhe β-Peptide Hairpin in Solution: Conformational Study of a β-Hexapeptide in Methanol by NMR Spectroscopy and MD SimulationJournal of the American Chemical Society, 2001
- Screen Savers of the World Unite!Science, 2000
- Thermodynamics and Kinetics of Folding of Two Model Peptides Investigated by Molecular Dynamics SimulationsThe Journal of Physical Chemistry B, 2000
- Development and Testing of the OPLS All-Atom Force Field on Conformational Energetics and Properties of Organic LiquidsJournal of the American Chemical Society, 1996
- Dictionary of protein secondary structure: Pattern recognition of hydrogen‐bonded and geometrical featuresBiopolymers, 1983