Energy Gradients in Combined Fragment Molecular Orbital and Polarizable Continuum Model (FMO/PCM) Calculation

Hui Li, Dmitri G. Fedorov, Takashi Nagata, Kazuo Kitaura, Jan Halborg Jensen, Mark S. Gordon

47 Citationer (Scopus)

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.

OriginalsprogEngelsk
TidsskriftJournal of Computational Chemistry
Vol/bind32
Sider (fra-til)778-790
ISSN0192-8651
StatusUdgivet - mar. 2010

Fingeraftryk

Dyk ned i forskningsemnerne om 'Energy Gradients in Combined Fragment Molecular Orbital and Polarizable Continuum Model (FMO/PCM) Calculation'. Sammen danner de et unikt fingeraftryk.

Citationsformater