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水对细菌视紫红质结构及紫膜中光化学过程的影响。

Effect of water on the structure of bacteriorhodopsin and photochemical processes in purple membranes.

作者信息

Lazarev Y A, Terpugov E L

出版信息

Biochim Biophys Acta. 1980 May 9;590(3):324-38. doi: 10.1016/0005-2728(80)90203-0.

Abstract

Visible and infrared spectra of bacteriorhodopsin films under different humidities at room and low temperatures are investigated. On dehydration of purple membranes at room temperatures an additional chromophore state with the absorption band at 506 nm is revealed. The photocycle of purple membranes in the dry state is devoid of the 550 nm intermediate and involves the long-lived intermediate at 412 nm. As water is removed, the 550 nm intermediate becomes undetectable. The analysis of the infrared spectra shows that dehydration does not affect the ordering of the main network of the interpeptide hydrogen bonds which stabilizes the alpha-helical conformation (slightly distorted in the intial humid dark- and light-adapted state); light adaptation (cis-trans isomerization) of bacteriorhodopsin results in an increase of sorbed water in purple membranes. Dehydration of purple membranes decreases the reaction rate of cis-trans isomerization.

摘要

研究了在室温和低温下不同湿度条件下细菌视紫红质薄膜的可见光谱和红外光谱。在室温下紫色膜脱水时,会出现一个额外的发色团状态,其吸收带位于506nm。干燥状态下紫色膜的光循环没有550nm的中间体,而是涉及412nm处的长寿命中间体。随着水分的去除,550nm的中间体变得无法检测到。红外光谱分析表明,脱水并不影响稳定α-螺旋构象的肽间氢键主网络的有序性(在初始潮湿的暗适应和光适应状态下略有扭曲);细菌视紫红质的光适应(顺反异构化)会导致紫色膜中吸附水的增加。紫色膜的脱水会降低顺反异构化的反应速率。

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