Rieder R, Bosshard H R
J Biol Chem. 1980 May 25;255(10):4732-9.
The isolated complexes of ferricytochrome c with cytochrome c oxidase, cytochrome c reductase (cytochrome bc1 or complex III), and cytochrome c1 (a subunit of cytochrome c reductase) were investigated by the method of differential chemical modification (Bosshard, H.R. (1979) Methods Biochem. Anal. 25, 273-301). By this method the chemical reactivity of each of the 19 lysyl side chains of horse cytochrome c was compared in free and in complexed cytochrome c and binding sites were deduced from altered chemical reactivities of particular lysyl side chains in complexed cytochrome c. The most important findings follow. 1. The binding sites on cytochrome c for cytochrome c oxidase and cytochrome c reductase, defined in terms of the involvement of particular lysyl residues, are indistinguishable. The two oxidation-reduction partners of cytochrome c interact at the front (exposed heme edge) and top left part of the molecule, shielding mainly lysyl residues 8, 13, 72 + 73, 86, and 87. The chemical reactivity of lysyl residues 22, 39, 53, 55, 60, 99, and 100 is unaffected by complex formation while the remaining lysyl residues in positions 5, 7, 25, 27, 79, and 88 are somewhat less reactive in the complexed molecule. 2. When bound to cytochrome c reductase or to the isolated cytochrome c1 subunit of the reductase the same lysyl side chains of cytochrome c are shielded. This indicates that cytochrome c binds to the c1 subunit of the reductase during the electron transfer process.
采用化学修饰差异法(博斯哈德,H.R.(1979年)《生物化学分析方法》第25卷,第273 - 301页)研究了高铁细胞色素c与细胞色素c氧化酶、细胞色素c还原酶(细胞色素bc1或复合体III)以及细胞色素c1(细胞色素c还原酶的一个亚基)形成的分离复合物。通过该方法,比较了马细胞色素c的19个赖氨酸侧链在游离和复合状态下的化学反应性,并根据复合细胞色素c中特定赖氨酸侧链化学反应性的改变推断出结合位点。最重要的发现如下:1. 从特定赖氨酸残基的参与情况定义的细胞色素c与细胞色素c氧化酶及细胞色素c还原酶的结合位点无法区分。细胞色素c的两个氧化还原伙伴在分子的前部(暴露的血红素边缘)和左上部相互作用,主要屏蔽赖氨酸残基8、13、72 + 73、86和87。赖氨酸残基22、39、53、55、60、99和100的化学反应性不受复合物形成的影响,而位于5、7、25、27、79和88位的其余赖氨酸残基在复合分子中的反应性略低。2. 当与细胞色素c还原酶或还原酶的分离细胞色素c1亚基结合时,细胞色素c的相同赖氨酸侧链会被屏蔽。这表明在电子传递过程中细胞色素c与还原酶的c1亚基结合。