Alleyne T A, Wilson M T, Antonini G, Malatesta F, Vallone B, Sarti P, Brunori M
Department of Chemistry and Biological Chemistry, University of Essex, Colchester, U.K.
Biochem J. 1992 Nov 1;287 ( Pt 3)(Pt 3):951-6. doi: 10.1042/bj2870951.
Complexes of cytochrome c oxidase and cytochrome c (Fe- or Zn-containing) have been prepared by 1-ethyl-3-[3-(dimethylamino)propyl]carbodi-imide (EDC) cross-linking. The site to which the cytochrome c covalently binds has been identified as being the same, or close to, the site occupied by cytochrome c in the electrostatic complex which may be formed between the proteins. Stopped-flow experiments, monitored either at a single wavelength or through a rapid wavelength-scan facility, showed that covalently bound Fe-containing cytochrome c cannot donate electrons to cytochrome a. Free Fe-containing cytochrome c was, however, able to transfer electrons to cytochrome a in covalent complexes containing either Fe- or Zn-containing cytochrome c. Turnover experiments showed that the complexed enzyme remains catalytically competent but with decreased (40-80%) activity. The steady-state levels of reduction of both free cytochrome c and cytochrome a in the covalent complex were higher than found in the control (uncomplexed) enzyme. These results are discussed with reference to the structure of the covalent complex and lead us to conclude that cytochrome a may accept electrons directly from free cytochrome c and that cross-linking impairs the redox properties of the CuA site.
通过1-乙基-3-[3-(二甲基氨基)丙基]碳二亚胺(EDC)交联制备了细胞色素c氧化酶与细胞色素c(含铁或锌)的复合物。已确定细胞色素c共价结合的位点与蛋白质之间可能形成的静电复合物中细胞色素c占据的位点相同或相近。在单一波长下监测或通过快速波长扫描设备进行监测的停流实验表明,共价结合的含铁细胞色素c不能将电子传递给细胞色素a。然而,游离的含铁细胞色素c能够在含有含铁或含锌细胞色素c的共价复合物中将电子传递给细胞色素a。周转实验表明,复合酶仍具有催化活性,但活性降低了(40%-80%)。共价复合物中游离细胞色素c和细胞色素a的稳态还原水平高于对照(未复合)酶中的水平。结合共价复合物的结构对这些结果进行了讨论,得出结论:细胞色素a可能直接从游离细胞色素c接受电子,交联会损害CuA位点的氧化还原特性。