Hamel Patrice, Corvest Vincent, Giegé Philippe, Bonnard Géraldine
Department of Plant Cellular and Molecular Biology, The Ohio State University, 43210, Columbus, OH 43210, USA.
Biochim Biophys Acta. 2009 Jan;1793(1):125-38. doi: 10.1016/j.bbamcr.2008.06.017. Epub 2008 Jul 4.
Cytochromes c are metalloproteins that function in electron transfer reactions and contain a heme moiety covalently attached via thioether linkages between the co-factor and a CXXCH motif in the protein. Covalent attachment of the heme group occurs on the positive side of all energy-transducing membranes (bacterial periplasm, mitochondrial intermembrane space and thylakoid lumen) and requires minimally: 1) synthesis and translocation of the apocytochromes c and heme across at least one biological membrane, 2) reduction of apocytochromes c and heme and maintenance under a reduced form prior to 3) catalysis of the heme attachment reaction. Surprisingly, the conversion of apoforms of cytochromes c to their respective holoforms occurs through at least three different pathways (systems I, II and III). In this review, we detail the assembly process of soluble cytochrome c and membrane-bound cytochrome c1, the only two mitochondrial c-type cytochromes that function in respiration. Mitochondrial c-type cytochromes are matured in the intermembrane space via the system I or system III pathway, an intriguing finding considering that the biochemical requirements for cytochrome c maturation are believed to be common regardless of the energy-transducing membrane under study.
细胞色素c是金属蛋白,在电子传递反应中起作用,含有一个通过辅因子与蛋白质中CXXCH基序之间的硫醚键共价连接的血红素部分。血红素基团的共价连接发生在所有能量转换膜(细菌周质、线粒体内膜间隙和类囊体腔)的正侧,并且至少需要:1)脱辅基细胞色素c和血红素跨至少一层生物膜的合成和转运,2)脱辅基细胞色素c和血红素的还原以及在3)血红素附着反应催化之前保持还原形式。令人惊讶的是,细胞色素c的脱辅基形式向其各自的全辅基形式的转化至少通过三种不同的途径(系统I、II和III)发生。在这篇综述中,我们详细介绍了可溶性细胞色素c和膜结合细胞色素c1的组装过程,这是仅有的两种在线粒体呼吸中起作用的c型细胞色素。线粒体c型细胞色素通过系统I或系统III途径在线粒体内膜间隙中成熟,考虑到无论所研究的能量转换膜如何,细胞色素c成熟的生化要求被认为是相同的,这是一个有趣的发现。