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从头算正则模式分析揭示氢键网络在细菌视紫红质光驱动质子泵储能中的作用

Role of hydrogen-bond network in energy storage of bacteriorhodopsin's light-driven proton pump revealed by ab initio normal-mode analysis.

作者信息

Hayashi Shigehiko, Tajkhorshid Emad, Kandori Hideki, Schulten Klaus

机构信息

Fukui Institute for Fundamental Chemistry, Kyoto University, Kyoto 606-8103, Japan.

出版信息

J Am Chem Soc. 2004 Sep 1;126(34):10516-7. doi: 10.1021/ja047506s.

Abstract

Vibrational modes of the hydrogen-bond network in the binding site of bacteriorhodopsin (bR), a protein in halobacteria functioning as a light-driven proton pump, were investigated by an ab initio quantum mechanical/molecular mechanical (QM/MM) method. Normal-mode analysis calculations for O-D and N-D stretching modes of internal water molecules and the Schiff base of the retinal chromophore in the early intermediate state, K, reproduced well experimentally observed vibrational spectra. Supported by agreement with observed spectra, the QM/MM calculation suggests that weakened hydrogen bonds upon photoisomerization of the chromophore are an important means of energy storage in bR.

摘要

嗜盐菌视紫红质(bR)是嗜盐菌中一种作为光驱动质子泵的蛋白质,利用从头算量子力学/分子力学(QM/MM)方法研究了其结合位点处氢键网络的振动模式。对早期中间态K中内部水分子的O-D和N-D伸缩模式以及视黄醛发色团的席夫碱进行的简正模式分析计算,很好地再现了实验观测到的振动光谱。在与观测光谱相符的支持下,QM/MM计算表明,发色团光异构化时氢键减弱是bR中能量储存的重要方式。

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