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Study of the Villin headpiece folding dynamics by combining coarse-grained Monte Carlo evolution and all-atom molecular dynamics

Authors :
Giacomo M.S. De Mori
Giorgio Colombo
Cristian Micheletti
Source :
Proteins, 58 (2005): 459–471. doi:10.1002/prot.20313, info:cnr-pdr/source/autori:De Mori G.M.S.(1), Colombo G.(1), Micheletti C.(2)/titolo:Study of the villin headpiece folding dynamics by combining coarse-grained Monte Carlo evolution and all-atom molecular dynamics/doi:10.1002%2Fprot.20313/rivista:Proteins (Print)/anno:2005/pagina_da:459/pagina_a:471/intervallo_pagine:459–471/volume:58
Publication Year :
2004
Publisher :
Wiley, 2004.

Abstract

The folding mechanism of the Villin headpiece (HP36) is studied by means of a novel approach which entails an initial coarse-grained Monte Carlo (MC) scheme followed by all-atom molecular dynamics (MD) simulations in explicit solvent. The MC evolution occurs in a simplified free-energy landscape and allows an efficient selection of marginally-compact structures which are taken as viable initial conformations for the MD. The coarse-grained MC structural representation is connected to the one with atomic resolution through a ``fine--graining'' reconstruction algorithm. This two-stage strategy is used to select and follow the dynamics of seven different unrelated conformations of HP36. In a notable case the MD trajectory rapidly evolves towards the folded state, yielding a typical RMS deviation of the core region of only 2.4 A from the closest NMR model (the typical RMSD over the whole structure being 4.0A). The analysis of the various MC-MD trajectories provides valuable insight into the details of the folding and mis-folding mechanisms and particularly about the delicate influence of local and non-local interactions in steering the folding process.<br />Comment: Revtex, 20 pages, 10 figures

Details

ISSN :
08873585
Volume :
58
Database :
OpenAIRE
Journal :
Proteins: Structure, Function, and Bioinformatics
Accession number :
edsair.doi.dedup.....c316b3158fddc8684cde44970af9fe0a