Goldman B S, Beck D L, Monika E M, Kranz R G
Department of Biology, Washington University, One Brookings Drive, St. Louis, MO 63130, USA.
Proc Natl Acad Sci U S A. 1998 Apr 28;95(9):5003-8. doi: 10.1073/pnas.95.9.5003.
Heme proteins play pivotal roles in a wealth of biological processes. Despite this, the molecular mechanisms by which heme traverses bilayer membranes for use in biosynthetic reactions are unknown. The biosynthesis of c-type cytochromes requires that heme is transported to the bacterial periplasm or mitochondrial intermembrane space where it is covalently ligated to two reduced cysteinyl residues of the apocytochrome. Results herein suggest that a family of integral membrane proteins in prokaryotes, protozoans, and plants act as transmembrane heme delivery systems for the biogenesis of c-type cytochromes. The complete topology of a representative from each of the three subfamilies was experimentally determined. Key histidinyl residues and a conserved tryptophan-rich region (designated the WWD domain) are positioned at the site of cytochrome c assembly for all three subfamilies. These histidinyl residues were shown to be essential for function in one of the subfamilies, an ABC transporter encoded by helABCD. We believe that a directed heme delivery pathway is vital for the synthesis of cytochromes c, whereby heme iron is protected from oxidation via ligation to histidinyl residues within the delivery proteins.
血红素蛋白在众多生物过程中发挥着关键作用。尽管如此,血红素穿过双层膜用于生物合成反应的分子机制仍不清楚。c型细胞色素的生物合成要求血红素被转运到细菌周质或线粒体内膜间隙,在那里它与脱辅基细胞色素的两个还原半胱氨酰残基共价连接。本文的结果表明,原核生物、原生动物和植物中的一类整合膜蛋白作为c型细胞色素生物合成的跨膜血红素传递系统。通过实验确定了三个亚家族中每个亚家族代表性成员的完整拓扑结构。对于所有三个亚家族,关键的组氨酰残基和一个保守的富含色氨酸区域(称为WWD结构域)位于细胞色素c组装位点。这些组氨酰残基在其中一个亚家族(由helABCD编码的ABC转运蛋白)的功能中被证明是必不可少的。我们认为,定向血红素传递途径对于细胞色素c的合成至关重要,通过与传递蛋白内的组氨酰残基连接,血红素铁可免受氧化。