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光合反应中心的脂质:结构作用与功能空穴

Lipids in photosynthetic reaction centres: structural roles and functional holes.

作者信息

Jones Michael R

机构信息

Department of Biochemistry, School of Medical Sciences, University of Bristol, University Walk, Bristol BS8 1TD, United Kingdom.

出版信息

Prog Lipid Res. 2007 Jan;46(1):56-87. doi: 10.1016/j.plipres.2006.06.001. Epub 2006 Aug 22.

Abstract

Photosynthetic proteins power the biosphere. Reaction centres, light harvesting antenna proteins and cytochrome b(6)f (or bc(1)) complexes are expressed at high levels, have been subjected to an intensive spectroscopic, biochemical and mutagenic analysis, and several have been characterised to an informatively high resolution by X-ray crystallography. In addition to revealing the structural basis for the transduction of light energy, X-ray crystallography has brought molecular insights into the relationships between these multicomponent membrane proteins and their lipid environment. Lipids resolved in the X-ray crystal structures of photosynthetic proteins bind light harvesting cofactors, fill intra-protein cavities through which quinones can diffuse, form an important part of the monomer-monomer interface in multimeric structures and may facilitate structural flexibility in complexes that undergo partial disassembly and repair. It has been proposed that individual lipids influence the biophysical properties of reaction centre cofactors, and so affect the rate of electron transfer through the complex. Lipids have also been shown to be important for successful crystallisation of photosynthetic proteins. Comparison of the three types of reaction centre that have been structurally characterised reveals interesting similarities in the position of bound lipids that may point towards a generic requirement to reinforce the structure of the core electron transfer domain. The crystallographic data are also providing new opportunities to find molecular explanations for observed effects of different types of lipid on the structure, mechanism and organisation of reaction centres and other photosynthetic proteins.

摘要

光合蛋白为生物圈提供能量。反应中心、光捕获天线蛋白以及细胞色素b(6)f(或bc(1))复合物大量表达,已接受深入的光谱、生化和诱变分析,并且其中几种已通过X射线晶体学以高分辨率得到表征。除了揭示光能转导的结构基础外,X射线晶体学还为这些多组分膜蛋白与其脂质环境之间的关系带来了分子层面的见解。在光合蛋白的X射线晶体结构中解析出的脂质结合光捕获辅因子,填充醌可通过其扩散的蛋白内空腔,在多聚体结构中形成单体-单体界面的重要部分,并可能促进经历部分拆解和修复的复合物中的结构灵活性。有人提出,单个脂质会影响反应中心辅因子的生物物理性质,从而影响通过复合物的电子传递速率。脂质对于光合蛋白的成功结晶也很重要。对已进行结构表征的三种类型反应中心的比较揭示了结合脂质位置上有趣的相似性,这可能指向强化核心电子传递结构域结构的普遍需求。晶体学数据也为寻找分子层面的解释提供了新机会,以解释不同类型脂质对反应中心及其他光合蛋白的结构、机制和组织所观察到的影响。

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