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Protein Machineries Involved in the Attachment of Heme to Cytochrome c: Protein Structures and Molecular Mechanisms

机译:涉及血红素与细胞色素c结合的蛋白质机制:蛋白质结构和分子机制

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Cytochromes c (Cyt c) are ubiquitous heme-containing proteins, mainly involved in electron transfer processes, whose structure and functions have been and still are intensely studied. Surprisingly, our understanding of the molecular mechanism whereby the heme group is covalently attached to the apoprotein (apoCyt) in the cell is still largely unknown. This posttranslational process, known as Cyt c biogenesis or Cyt c maturation, ensures the stereospecific formation of the thioether bonds between the heme vinyl groups and the cysteine thiols of the apoCyt heme binding motif. To accomplish this task, prokaryotic and eukaryotic cells have evolved distinctive protein machineries composed of different proteins. In this review, the structural and functional properties of the main maturation apparatuses found in gram-negative and gram-positive bacteria and in the mitochondria of eukaryotic cells will be presented, dissecting the Cyt c maturation process into three functional steps: (i) heme translocation and delivery, (ii) apoCyt thioreductive pathway, and (iii) apoCyt chaperoning and heme ligation. Moreover, current hypotheses and open questions about the molecular mechanisms of each of the three steps will be discussed, with special attention to System I, the maturation apparatus found in gram-negative bacteria.
机译:细胞色素c(Cyt c)是普遍存在的含血红素的蛋白质,主要参与电子转移过程,其结构和功能已经并且仍在深入研究中。出人意料的是,我们对血红素基团与细胞中载脂蛋白(apoCyt)共价结合的分子机制的了解仍然未知。该翻译后过程称为Cyt c生物发生或Cyt c成熟,可确保apoCyt血红素结合基序的血红素乙烯基和半胱氨酸硫醇之间的硫醚键立体定向形成。为了完成这一任务,原核和真核细胞已经进化出由不同蛋白质组成的独特蛋白质机制。在这篇综述中,将介绍革兰氏阴性和革兰氏阳性细菌以及真核细胞线粒体中发现的主要成熟设备的结构和功能特性,将Cyt c成熟过程分为三个功能步骤:(i)血红素易位和递送,(ii)载脂蛋白Cyt还原途径,以及(iii)载脂蛋白C伴侣和血红素结扎。此外,将讨论有关这三个步骤中每个步骤的分子机理的当前假设和未解决的问题,并将特别关注系统I,即革兰氏阴性细菌中发现的成熟设备。

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