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细菌光合作用反应中心的生电反应机制:与亚历山大·康斯坦丁诺夫合作的研究。

The Mechanisms of Electrogenic Reactions in Bacterial Photosynthetic Reaction Centers: Studies in Collaboration with Alexander Konstantinov.

机构信息

Institute of Basic Biological Problems, Pushchino Scientific Center for Biological Research, Russian Academy of Sciences, Pushchino, Moscow Region, 142290, Russia.

Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, 119992, Russia.

出版信息

Biochemistry (Mosc). 2021 Jan;86(1):1-7. doi: 10.1134/S0006297921010016.

Abstract

In this review, we discuss our studies conducted in 1985-1988 in collaboration with A. A. Konstantinov, one of the top scientists in the field of membrane bioenergetics. Studying fast kinetics of membrane potential generation in photosynthetic reaction centers (RCs) of purple bacteria in response to a laser flash has made it possible to examine in detail the mechanisms of electrogenic reactions at the donor and acceptor sides of RCs. Electrogenesis associated with the intraprotein electron transfer from the exogenous secondary donors, redox dyes, and soluble cytochrome (cyt) c to the photooxidized dimer of bacteriochlorophyll P was studied using proteoliposomes containing RCs from the non-sulfur purple bacterium Rhodospirillum rubrum. It was found that reduction of the secondary quinone electron acceptor Q accompanied by its protonation in the chromatophores from R. rubrum in response to every second light flash was electrogenic. Spectral characteristics and redox potentials of the four hemes in the tightly bound cyt c in the RC of Blastochloris viridis and electrogenic reactions associated with the electron transfer within the RC complex were identified. For the first time, relative amplitudes of the membrane potential generated in the course of individual electrogenic reactions were compared with the distances between the redox cofactors determined based on the three-dimensional structure of the Bl. viridis RC.

摘要

在这篇综述中,我们讨论了我们在 1985-1988 年与膜生物能学领域的顶级科学家之一 A.A. Konstantinov 合作进行的研究。研究紫色细菌光合作用反应中心 (RC) 对激光闪光的膜电位快速动力学生成,使得详细研究 RC 供体和受体侧的电致反应机制成为可能。使用含有来自非硫紫色细菌红假单胞菌 RC 的脂质体研究了与源自外源性二次供体、氧化还原染料和可溶性细胞色素 (cyt) c 的蛋白内电子转移到细菌叶绿素 P 光氧化二聚体相关的电致发生。发现与每第二个光闪光响应时 Q 的还原伴随其在 R. rubrum 类囊体中的质子化是电致发生的。鉴定了 Blastochloris viridis RC 中紧密结合 cyt c 中四个血红素的光谱特征和氧化还原电位以及 RC 复合物内电子转移相关的电致反应。首次将单个电致发生过程中产生的膜电位的相对幅度与基于 Bl. viridis RC 三维结构确定的氧化还原辅因子之间的距离进行了比较。

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