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球形红假单胞菌的反应中心在重构磷脂囊泡中。II. 光诱导质子转运。

Reaction centers from Rhodopseudomonas sphaeroides in reconstituted phospholipid vesicles. II. Light-induced proton translocation.

作者信息

Hellingwerf K J

出版信息

J Bioenerg Biomembr. 1987 Jun;19(3):225-38. doi: 10.1007/BF00762414.

Abstract

Unidirectional light-dependent proton translocation was demonstrated in a suspension of reconstituted reaction center (RC) vesicles supplemented with cytochrome c and 2,3-dimethoxy-5-methyl-1,4-benzoquinone (UQ0), a lipid- and water-soluble quinone. Proton translocation was detected only at alkaline pH. The pH dependence can be accounted for by the slow redox reaction between the reduced quinone (UQ0H2) and oxidized cytochrome c. This conclusion is based on (i) the pH dependence of partial reactions of the reconstituted proton translocation cycle, measured either optically or electrometrically and (ii) titration studies with cytochrome c and UQ0. At 250 and 25 microM UQ0 and cytochrome c, respectively, maximal proton translocation was observed at pH 9.6. This pH optimum can be extended to a more acidic pH by increasing the concentration of the soluble redox mediators in the reconstituted cyclic electron transfer chain. At the alkaline side of the pH optimum, proton translocation appears to be limited by electron transfer from the endogenous primary to the secondary quinone within the RCs. The light intensity limits the reconstituted proton pump at the optimal pH. The results are discussed in the context of a reaction scheme for the cyclic redox reactions and the associated proton translocation events.

摘要

在补充了细胞色素c和2,3 - 二甲氧基 - 5 - 甲基 - 1,4 - 苯醌(UQ0,一种脂溶性和水溶性醌)的重组反应中心(RC)囊泡悬浮液中,证明了单向光依赖质子转运。仅在碱性pH下检测到质子转运。pH依赖性可由还原醌(UQ0H2)和氧化细胞色素c之间的缓慢氧化还原反应来解释。这一结论基于:(i)通过光学或电位测量法测量的重组质子转运循环部分反应的pH依赖性,以及(ii)细胞色素c和UQ0的滴定研究。分别在250和25 microM的UQ0和细胞色素c浓度下,在pH 9.6时观察到最大质子转运。通过增加重组循环电子传递链中可溶性氧化还原介质的浓度,这个最佳pH可以扩展到更酸性的pH。在最佳pH的碱性侧,质子转运似乎受到反应中心内从内源性初级醌到次级醌的电子转移的限制。在最佳pH下,光强度限制重组质子泵。在循环氧化还原反应和相关质子转运事件的反应方案背景下讨论了这些结果。

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