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球形红假单胞菌泛醌 - 细胞色素b - c2氧化还原酶中的单周转和多周转反应:细胞色素c2主要电子供体的物理化学性质及其偶联反应

Single and multiple turnover reactions in the ubiquinone-cytochrome b-c2 oxidoreductase of Rhodopseudomonas sphaeroids: the physical chemistry of the major electron donor to cytochrome c2, and its coupled reactions.

作者信息

Prince R C, Dutton P L

出版信息

Biochim Biophys Acta. 1977 Dec 23;462(3):731-47. doi: 10.1016/0005-2728(77)90114-1.

DOI:10.1016/0005-2728(77)90114-1
PMID:202311
Abstract

We have examined the thermodynamic properties of the physiological electron donor to ferricytochrome c2 in chromatophores from the photosynthetic bacterium Rhodopseudomonas sphaeroides. This donor (Z), which is capable of reducing the ferricytochrome with a halftime of 1-2 ms under optimal conditions, has an oxidation-reduction midpoint potential of close to 150 mV at pH 7.0, and apparently requires two electrons and two protons for its equilibrium reduction. The state of reduction of Z, which may be a quinone.protein complex near the inner (cytochrome c2) side of the membrane, appears to govern the rate at which the cyclic photosynthetic electron transport system can operate. If Z is oxidized prior to the flash-oxidation of cytochrome c2, the re-reduction of the cytochrome takes hundreds of milliseconds and no third phase of the carotenoid bandshift occurs. In contrast if Z is reduced before flash activation, the cytochrome is rereduced within milliseconds and the third phase of the carotenoid bandshift occurs. The prior reduction of Z also has a dramatic effect on the uncoupler sensitivity of the rate of electron flow; if it is oxidized prior to activation, uncoupler can stimulate the cytochrome rereduction after several turnovers by less than tenfold, but if it is reduced prior to activation, the stimulation after several turnovers can be as dramatic as a thousandfold. The results suggest that Z plays a central role in controlling electron and proton movements in the ubiquinone cytochrome b-c2 oxido-reductase.

摘要

我们研究了光合细菌球形红假单胞菌(Rhodopseudomonas sphaeroides)的载色体中细胞色素c2的生理电子供体的热力学性质。该供体(Z)在最佳条件下能够在1-2毫秒的半衰期内还原高铁细胞色素c2,在pH 7.0时氧化还原中点电位接近150 mV,并且其平衡还原显然需要两个电子和两个质子。Z的还原状态,可能是靠近膜内侧(细胞色素c2)的醌 - 蛋白质复合物,似乎决定了循环光合电子传输系统的运行速率。如果在细胞色素c2的闪光氧化之前Z被氧化,细胞色素的再还原需要数百毫秒并且类胡萝卜素带移的第三阶段不会发生。相反,如果在闪光激活之前Z被还原,细胞色素会在几毫秒内被再还原并且类胡萝卜素带移的第三阶段会发生。Z的预先还原对电子流速率的解偶联剂敏感性也有显著影响;如果在激活之前它被氧化,解偶联剂在几次周转后可以刺激细胞色素再还原不到十倍,但如果在激活之前它被还原,几次周转后的刺激可以高达一千倍。结果表明,Z在控制泛醌 - 细胞色素b - c2氧化还原酶中的电子和质子运动中起核心作用。

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