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与 Rb. sphaeroides 反应中心醌受体部分电子稳定相关的弛豫过程。

Relaxation processes accompanying electron stabilization in the quinone acceptor part of Rb. sphaeroides reaction centers.

机构信息

Department of Biophysics, Biological Faculty of the M.V., Lomonosov Moscow State University, 119991 Moscow, Russia.

Department of Biophysics, Biological Faculty of the M.V., Lomonosov Moscow State University, 119991 Moscow, Russia.

出版信息

J Photochem Photobiol B. 2018 Dec;189:145-151. doi: 10.1016/j.jphotobiol.2018.10.005. Epub 2018 Oct 5.

Abstract

The temperature dependence of the dark recombination rate in photooxidized bacteriochlorophyll (P) and photoreduced quinone acceptors (ubiquinones) Q and Q of photosynthetic reaction centers of purple bacteria Rhodobacter sphaeroides (Rb. sphaeroides) was studied. Photoinduced changes in the absorption were detected in the Q absorption band of photooxidized bacteriochlorophyll at 600 nm and in the bands corresponding to the redox changes of ubiquinones at 335 and 420-450 nm. Kinetic analysis was used to evaluate the activation energy and the characteristic time of the transient process of relaxation accompanying electron stabilization at the final quinone acceptor. A comparative study of the kinetics of oxidation-reduction reactions of photoactive bacteriochlorophyll RC purple bacteria and quinone acceptors in their individual absorption bands is an informative approach to studying the mechanisms of this stabilization. The analysis of the revealed kinetic differences makes it possible to estimate the activation energy and the characteristic times of the transition relaxation processes associated with the stabilization of the electron in the quinone acceptor part of RC. Purple bacterial reaction centers have fundamental similarities with PSII reaction centers. Such a similarity represents evolutional closeness between the two types of RC. So it is possible that the photoinduced charge separation in PSII RC, as well as in purple bacteria RC, is also accompanied by definite conformational changes. The possible role of hydrogen bonds of surrounding protein in the relaxation processes accompanying the electron transfer to quinone acceptors is discussed.

摘要

研究了紫色细菌(Rb. sphaeroides)光合反应中心中光氧化细菌叶绿素(P)和光还原醌受体(泛醌)Q 和 Q 的暗复合速率对温度的依赖性。在 600nm 处光氧化细菌叶绿素的 Q 吸收带和在 335nm 和 420-450nm 处对应于泛醌氧化还原变化的带中检测到光诱导的吸收变化。动力学分析用于评估伴随最终醌受体上电子稳定的弛豫瞬变过程的活化能和特征时间。在各自的吸收带中对光活性细菌叶绿素 RC 紫细菌和醌受体的氧化还原反应动力学进行比较研究是研究这种稳定机制的一种有益方法。对所揭示的动力学差异的分析使得能够估计与 RC 中醌受体部分的电子稳定相关的过渡弛豫过程的活化能和特征时间。紫细菌反应中心与 PSII 反应中心具有基本相似性。这种相似性代表了两种类型的 RC 在进化上的接近性。因此,PSII RC 中的光诱导电荷分离以及紫细菌 RC 中的光诱导电荷分离可能也伴随着确定的构象变化。讨论了周围蛋白质氢键在向醌受体转移电子过程中伴随的弛豫过程中的可能作用。

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