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Continued surprises in the cytochrome c biogenesis story

机译:细胞色素C生物发生故事的持续惊喜

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Cytochromes c covalently bind their heme prosthetic groups through thioether bonds between the vinyl groups of the heme and the thiols of a CXXCH motif within the protein. In Gram-negative bacteria, this process is catalyzed by the Ccm (cytochrome c maturation) proteins, also called System I. The Ccm proteins are found in the bacterial inner membrane, but some (CcmE, CcmG, CcmH, and CcmI) also have soluble functional domains on the periplasmic face of the membrane. Elucidation of the mechanisms involved in the transport and relay of heme and the apocytochrome from the bacterial cytosol into the periplasm, and their subsequent reaction, has proved challenging due to the fact that most of the proteins involved are membrane-associated, but recent progress in understanding some key components has thrown up some surprises. In this Review, we discuss advances in our understanding of this process arising from a substrate’s point of view and from recent structural information about individual components.
机译:细胞色素c通过血红素的乙烯基和蛋白质中CXXCH基序的硫醇之间的硫醚键共价结合其血红素辅基。在革兰氏阴性细菌中,此过程由Ccm(细胞色素c成熟)蛋白(也称为系统I)催化。Ccm蛋白存在于细菌内膜中,但有些(CcmE,CcmG,CcmH和CcmI)具有膜周质表面上的可溶性功能域。阐明血红素和脱辅基色素从细菌的细胞质进入周质的运输和中继所涉及的机制,以及它们随后的反应,由于涉及的大多数蛋白质是膜相关的,但最近的研究进展证明具有挑战性。了解一些关键组件会带来一些惊喜。在这篇评论中,我们讨论了从基材的角度以及有关各个组件的最新结构信息所产生的对该过程的理解方面的进展。

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