4.8 Article

Folding free-energy landscape of villin headpiece subdomain from molecular dynamics simulations

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.0608432104

Keywords

ab initio protein folding; replica exchange

Funding

  1. NIGMS NIH HHS [R01 GM067168, GM67168, GM64458, R01 GM064458] Funding Source: Medline

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High-accuracy ab initio folding has remained an elusive objective despite decades of effort. To explore the folding landscape of villin headpiece subdomain HP35, we conducted two sets of replica exchange molecular dynamics for 200 ns each and three sets of conventional microsecond-long molecular dynamics simulations, using AMBER FF03 force field and a generalized-Born solvation model. The protein folded consistently to the native state; the lowest C-alpha-rmsd from the x-ray structure was 0.46 angstrom, and the C-alpha-rmsd of the center of the most populated cluster was 1.78 angstrom at 300 K. ab initio simulations have previously not reached this level. The folding landscape of HP35 can be partitioned into the native, denatured, and two intermediate-state regions. The native state is separated from the major folding intermediate state by a small barrier, whereas a large barrier exists between the major folding intermediate and the denatured states. The melting temperature T-m = 339 K extracted from the heat-capacity profile was in close agreement with the experimentally derived T = 342 K. A comprehensive picture of the kinetics and thermodynamics of HP35 folding emerges when the results from replica exchange and conventional molecular dynamics simulations are combined.

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