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在有氧和无氧条件下,Tris洗涤的光系统II膜中细胞色素b(559)的低电位和高电位形式的相互转化

Interconversion of low- and high-potential forms of cytochrome b(559) in Tris-washed photosystem II membranes under aerobic and anaerobic conditions.

作者信息

Gadjieva R, Mamedov F, Renger G, Styring S

机构信息

Department of Biochemistry, Center for Chemistry and Chemical Engineering, University of Lund, P.O. Box 124, S-22100 Lund, Sweden.

出版信息

Biochemistry. 1999 Aug 10;38(32):10578-84. doi: 10.1021/bi9904656.

Abstract

In this study, the reversible conversion between the high- (HP) and low-potential (LP) forms of Cytb(559) has been analyzed in Tris-washed photosystem II (PSII) enriched membranes. These samples are deprived of the Mn cluster of the water-oxidizing complex (WOC) and the extrinsic regulatory proteins. The results obtained by application of optical and EPR spectroscopy reveal that (i) under aerobic conditions, the vast majority of Cytb(559) exhibits a low midpoint potential, (ii) after removal of O(2) in the dark, a fraction of Cytb(559) is converted to the high-potential form which reaches level of about 25% of the total Cytb(559), (iii) a similar dark transformation of LP --> HP Cytb(559) occurs under reducing conditions (8 mM hydroquinone), (iv) under anaerobic conditions and in the presence of 8 mM hydroquinone, about 60% of the Cytb(559) attains the HP form, (v) the interconversion is reversible with the re-establishment of aerobic conditions, and (vi) aerobic and oxidizing conditions (2 mM ferricyanide or 0.5 mM potassium iridate) induce a decrease of the amount of the HP form, also showing that the conversion is reversible. This reversible interconversion between LP and HP Cytb(559) is not observed in PSII membrane fragments with an intact WOC. On the basis of these findings, the possibility is discussed that the O(2)-dependent conversion of Cytb(559) in PSII complexes lacking a functionally competent WOC is related to a protective role of Cytb(559) in photoinhibition and/or that it is involved in the regulation of the assembly of a competent water-oxidizing complex in PSII.

摘要

在本研究中,已对经Tris洗涤的富含光系统II(PSII)的膜中细胞色素b(559)的高电位(HP)和低电位(LP)形式之间的可逆转换进行了分析。这些样品不含水氧化复合物(WOC)的锰簇和外在调节蛋白。通过光学和电子顺磁共振光谱法获得的结果表明:(i)在有氧条件下,绝大多数细胞色素b(559)表现出低中点电位;(ii)在黑暗中去除O₂后,一部分细胞色素b(559)转化为高电位形式,其达到总细胞色素b(559)的约25%的水平;(iii)在还原条件下(8 mM对苯二酚)发生类似的LP→HP细胞色素b(559)的黑暗转化;(iv)在厌氧条件下且存在8 mM对苯二酚时,约60%的细胞色素b(559)达到HP形式;(v)随着有氧条件的重新建立,这种相互转换是可逆的;(vi)有氧和氧化条件(2 mM铁氰化物或0.5 mM铱酸钾)导致HP形式的量减少,这也表明该转换是可逆的。在具有完整WOC的PSII膜片段中未观察到LP和HP细胞色素b(559)之间的这种可逆相互转换。基于这些发现,讨论了在缺乏功能正常的WOC的PSII复合物中,细胞色素b(559)的O₂依赖性转换与细胞色素b(559)在光抑制中的保护作用相关和/或它参与PSII中功能正常的水氧化复合物组装调节的可能性。

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