Abstract
The analytic energy gradients for the combined fragment molecular orbital and polarizable continuum model (FMO/PCM) method are derived and implemented. Applications of FMO/PCM geometry optimization to polyalanine show that the structures obtained with the FMO/PCM method are very close to those obtained with the corresponding full ab initio PCM metfiods. FMO/PCM (RHF/6-31G level) is used to optimize the solution structure of the 304-atom Trp-cage miniprotein and the result is in agreement with NMR experiments. The key factors determining the relative stability of the α-helix, β-turn and the extended form in solution are elucidated for polyalanine.
Originalsprog | Engelsk |
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Tidsskrift | Journal of Computational Chemistry |
Vol/bind | 32 |
Sider (fra-til) | 778-790 |
ISSN | 0192-8651 |
Status | Udgivet - mar. 2010 |