Malatesta F, Antonini G, Nicoletti F, Giuffrè A, D'Itri E, Sarti P, Brunori M
Dipartimento di Biologia di Base ed Applicata, Universita' di L'Aquila, Italy.
Biochem J. 1996 May 1;315 ( Pt 3)(Pt 3):909-16. doi: 10.1042/bj3150909.
A covalent complex between cytochrome c oxidase and Saccharomyces cerevisiae iso-1-cytochrome c (called caa3) has been prepared at low ionic strength. Subunit III Cys-115 of beef heart cytochrome c oxidase cross-links by disulphide bond formation to thionitrobenzoate-modified yeast cytochrome c, a derivative shown to bind into the high-affinity site for substrate [Fuller, Darley-Usmar and Capaldi (1981) Biochemistry 20, 7046-7053]. Stopped-flow experiments show that (1) covalently bound yeast cytochrome c cannot donate electrons to cytochrome oxidase, whereas oxidation of exogenously added cytochrome c and electron transfer to cytochrome a are only slightly affected; (2) the steady-state reduction levels of cytochrome c and cytochrome a in the covalent complex caa3 are higher than those found in the native aa3 enzyme. However, (3) K(m) and Vmax values obtained from the non-linear Eadie-Hofstee plots are very similar in both caa3 and aa3. The results imply that cytochrome c bound to the high-affinity site is not in a configuration optimal for electron transfer.
在低离子强度下制备了细胞色素c氧化酶与酿酒酵母同工酶-1-细胞色素c(称为caa3)之间的共价复合物。牛心细胞色素c氧化酶的亚基III半胱氨酸-115通过二硫键形成与硫代硝基苯甲酸修饰的酵母细胞色素c交联,该衍生物显示可结合到底物的高亲和力位点[富勒、达利-乌斯马尔和卡帕尔迪(1981年)《生物化学》20,7046 - 7053]。快速停流实验表明:(1)共价结合的酵母细胞色素c不能向细胞色素氧化酶供电子,而外源添加的细胞色素c的氧化以及向细胞色素a的电子传递仅受到轻微影响;(2)共价复合物caa3中细胞色素c和细胞色素a的稳态还原水平高于天然aa3酶中的水平。然而,(3)从非线性伊迪-霍夫斯泰德图获得的K(m)和Vmax值在caa3和aa3中非常相似。结果表明,结合到高亲和力位点的细胞色素c并非处于最适合电子传递的构型。