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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Replacement or exclusion of the B-branch bacteriopheophytin in the purple bacterial reaction centre: The H-B cofactor is not required for assembly or core function of the Rhodobacter sphaeroides complex
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Replacement or exclusion of the B-branch bacteriopheophytin in the purple bacterial reaction centre: The H-B cofactor is not required for assembly or core function of the Rhodobacter sphaeroides complex

机译:紫色细菌反应中心中B分支细菌脱镁叶绿素的替换或排除:球形红球菌复合物的组装或核心功能不需要H-B辅因子

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摘要

All of the membrane-embedded cofactors of the purple bacterial reaction centre have well-defined functional or structural roles, with the exception of the bacteriopheophytin (H-B) located approximately half-way across the membrane on the so-called inactive- or B-branch of cofactors. Sequence alignments indicate that this bacteriochlorin cofactor is a conserved feature of purple bacterial reaction centres, and a pheophytin is also found at this position in the Photosystem-II reaction centre. Possible structural or functional consequences of replacing the HB bacteriopheophytin by bacteriochlorophyll were investigated in the Rhodobacter sphaeroides reaction centre through mutagenesis of residue Leu L185 to His (LL185H). Results from absorbance spectroscopy indicated that the LL185H mutant assembled with a bacteriochlorophyll at the HB position, but this did not affect the capacity of the reaction centre to support photosynthetic growth, or change the kinetics of charge separation. along the A branch of cofactors. It was also found that mutation of residue Ala M 149 to Tip (AM149W) caused the reaction centre to assemble without an HB bacteriochlorin, demonstrating that this cofactor is not required for correct assembly of the reaction centre. The absence of a cofactor at this position did not affect the capacity of the reaction centre to support photosynthetic growth, or the kinetics of A-branch electron transfer. A combination of X-ray crystallography and FTIR difference spectroscopy confirmed that the H-B cofactor was absent in the AM 149W mutant, and that this had not produced any significant disturbance of the adjacent ubiquinol reductase (Q(B)) site. The data are discussed with respect to possible functional roles of the H-B bacteriopheophytin, and we conclude that the reason(s) for conservation of a bacteriopheophytin cofactor at this position in purple bacterial reaction centres are likely to be different from those underlying conservation of a pheophytin at the analogous position in Photosystem-II. (c) 2005 Elsevier B.V. All rights reserved.
机译:紫色细菌反应中心的所有嵌入膜的辅因子均具有明确定义的功能或结构作用,除了细菌脱镁叶绿素(HB)位于所谓的非活性或B分支上跨膜大约一半处辅助因子。序列比对表明该细菌绿素辅因子是紫色细菌反应中心的保守特征,并且在光系统II反应中心的该位置也发现了脱镁叶绿素。通过诱变残基Leu L185到His(LL185H),在球形红球菌反应中心研究了用细菌叶绿素代替HB噬菌素的可能的结构或功能后果。吸收光谱的结果表明,LL185H突变体在HB位置装配了细菌叶绿素,但这并不影响反应中心支持光合生长的能力或改变电荷分离的动力学。沿辅助因子的A分支。还发现残基Ala M 149突变为Tip(AM149W)导致反应中心无需HB细菌绿素进行组装,表明该辅因子对于正确组装反应中心不是必需的。在该位置上没有辅因子不影响反应中心支持光合生长的能力或A分支电子转移的动力学。 X射线晶体学和FTIR差异光谱法的结合证实了AM 149W突变体中不存在H-B辅因子,并且这对相邻的泛醇还原酶(Q(B))位点没有产生任何重大干扰。讨论了有关HB细菌脱镁叶绿素可能发挥的功能作用的数据,我们得出的结论是,在紫色细菌反应中心此位置上保留细菌脱镁叶绿素辅因子的原因可能与潜在的脱镁叶绿素有所不同。在Photosystem-II中处于类似位置。 (c)2005 Elsevier B.V.保留所有权利。

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