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Fragment molecular orbital study of the electronic excitations in the photosynthetic reaction center of Blastochloris viridis
Authors:Tsutomu Ikegami  Toyokazu Ishida  Dmitri G Fedorov  Kazuo Kitaura  Yuichi Inadomi  Hiroaki Umeda  Mitsuo Yokokawa  Satoshi Sekiguchi
Abstract:All electron calculations were performed on the photosynthetic reaction center of Blastochloris viridis, using the fragment molecular orbital (FMO) method. The protein complex of 20,581 atoms and 77,754 electrons was divided into 1398 fragments, and the two‐body expansion of FMO/6‐31G* was applied to calculate the ground state. The excited electronic states of the embedded electron transfer system were separately calculated by the configuration interaction singles approach with the multilayer FMO method. Despite the structural symmetry of the system, asymmetric excitation energies were observed, especially on the bacteriopheophytin molecules. The asymmetry was attributed to electrostatic interaction with the surrounding proteins, in which the cytoplasmic side plays a major role. © 2009 Wiley Periodicals, Inc. J Comput Chem 2010
Keywords:fragment molecular orbital method  photosynthetic reaction center  configuration interaction singles  parallel computing
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