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细菌视紫红质(bR)(D85S)的晶体结构支持细菌视紫红质作为羟基离子泵的模型。

Crystal structures of bR(D85S) favor a model of bacteriorhodopsin as a hydroxyl-ion pump.

作者信息

Facciotti Marc T, Rouhani Shahab, Glaeser Robert M

机构信息

Institute for Systems Biology, 1441 North 34th Street, Seattle, WA 98103, USA.

出版信息

FEBS Lett. 2004 Apr 30;564(3):301-6. doi: 10.1016/S0014-5793(04)00208-X.

Abstract

Structural features on the extracellular side of the D85S mutant of bacteriorhodopsin (bR) suggest that wild-type bR could be a hydroxyl-ion pump. A position between the protonated Schiff base and residue 85 serves as an anion-binding site in the mutant protein, and hydroxyl ions should have access to this site during the O-intermediate of the wild-type bR photocycle. The guanidinium group of R82 is proposed (1) to serve as a shuttle that eliminates the Born energy penalty for entry of an anion into this binding pocket, and conversely, (2) to block the exit of a proton or a related proton carrier.

摘要

细菌视紫红质(bR)的D85S突变体胞外侧的结构特征表明,野生型bR可能是一种羟基离子泵。在质子化席夫碱和85位残基之间的一个位置在突变蛋白中作为阴离子结合位点,在野生型bR光循环的O中间体期间羟基离子应该能够进入该位点。有人提出,R82的胍基(1)作为一种穿梭体,消除阴离子进入该结合口袋时的玻恩能罚,相反,(2)阻止质子或相关质子载体的流出。

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