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Challenges in protein folding simulations: Timescale, representation, and analysis.


ABSTRACT: Experimental studies of protein folding processes are frequently hampered by the fact that only low resolution structural data can be obtained with sufficient temporal resolution. Molecular dynamics simulations offer a complementary approach, providing extremely high resolution spatial and temporal data on folding processes. The effectiveness of such simulations is currently hampered by continuing questions regarding the ability of molecular dynamics force fields to reproduce the true potential energy surfaces of proteins, and ongoing difficulties with obtaining sufficient sampling to meaningfully comment on folding mechanisms. We review recent progress in the simulation of three common model systems for protein folding, and discuss how recent advances in technology and theory are allowing protein folding simulations to address their current shortcomings.

SUBMITTER: Freddolino PL 

PROVIDER: S-EPMC3032381 | biostudies-literature | 2010 Oct

REPOSITORIES: biostudies-literature

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Challenges in protein folding simulations: Timescale, representation, and analysis.

Freddolino Peter L PL   Harrison Christopher B CB   Liu Yanxin Y   Schulten Klaus K  

Nature physics 20101001 10


Experimental studies of protein folding processes are frequently hampered by the fact that only low resolution structural data can be obtained with sufficient temporal resolution. Molecular dynamics simulations offer a complementary approach, providing extremely high resolution spatial and temporal data on folding processes. The effectiveness of such simulations is currently hampered by continuing questions regarding the ability of molecular dynamics force fields to reproduce the true potential  ...[more]

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