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光合作用和呼吸作用中的生物特性与多样性:叶绿体里氏蛋白腔侧结构域的结构

Biological identity and diversity in photosynthesis and respiration: structure of the lumen-side domain of the chloroplast Rieske protein.

作者信息

Carrell C J, Zhang H, Cramer W A, Smith J L

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, IN 47907-1392, USA.

出版信息

Structure. 1997 Dec 15;5(12):1613-25. doi: 10.1016/s0969-2126(97)00309-2.

Abstract

BACKGROUND

The cytochrome b6f complex functions in oxygenic photosynthesis as an integral membrane protein complex that mediates coupled electron transfer and proton translocation. The Rieske [2Fe-2S] protein subunit of the complex functions at the electropositive (p) membrane interface as the electron acceptor for plastoquinol and donor for the cytochrome f subunit, and may have a dynamic role in catalyzing electron and proton transfer at the membrane interface. There are significant structure/function similarities to the cytochrome bc1 complex of the respiratory chain.

RESULTS

The 1.83 A crystal structure of a 139-residue C-terminal fragment of the Rieske [2Fe-2S] protein, derived from the cytochrome b6f complex of spinach chloroplasts, has been solved by multiwavelength anomalous diffraction. The structure of the fragment comprises two domains: a small 'cluster-binding' subdomain and a large subdomain. The [2Fe-2S] cluster-binding subdomains of the chloroplast and mitochondrial Rieske proteins are virtually identical, whereas the large subdomains are strikingly different despite a common folding topology. A structure-based sequence alignment of the b6f and bc1 groups of Rieske soluble domains is presented.

CONCLUSIONS

The segregation of structural conservation and divergence in the cluster-binding and large subdomains of the Rieske protein correlates with the overall relatedness of the cytochrome b6f and bc1 complexes, in which redox domains in the aqueous p phase are dissimilar and those within the membrane are similar. Distinct sequences and surface charge distributions among Rieske large subdomains may provide a signature for interaction with the p-side oxidant protein and for the pH of the intraorganelle compartment.

摘要

背景

细胞色素b6f复合物在氧光合作用中作为一种整合膜蛋白复合物发挥作用,介导耦合电子转移和质子转运。该复合物的 Rieske [2Fe-2S] 蛋白亚基在正电(p)膜界面发挥作用,作为质体醌醇的电子受体和细胞色素f亚基的供体,并且可能在催化膜界面的电子和质子转移中具有动态作用。它与呼吸链的细胞色素bc1复合物存在显著的结构/功能相似性。

结果

通过多波长反常衍射解析了源自菠菜叶绿体细胞色素b6f复合物的 Rieske [2Fe-2S] 蛋白139个残基C末端片段的1.83 Å晶体结构。该片段的结构包括两个结构域:一个小的“簇结合”亚结构域和一个大的亚结构域。叶绿体和线粒体 Rieske 蛋白的 [2Fe-2S] 簇结合亚结构域几乎相同,而大的亚结构域尽管折叠拓扑结构相同,但却显著不同。给出了 Rieske 可溶性结构域的b6f和bc1组基于结构的序列比对。

结论

Rieske 蛋白簇结合和大亚结构域中结构保守性和差异性的分离与细胞色素b6f和bc1复合物的整体相关性相关,其中水相p相中的氧化还原结构域不同,而膜内的结构域相似。Rieske大亚结构域之间不同的序列和表面电荷分布可能为与p侧氧化蛋白的相互作用以及细胞器内区室的pH值提供特征。

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