Thomas J W, Calhoun M W, Lemieux L J, Puustinen A, Wikström M, Alben J O, Gennis R B
School of Chemical Sciences, University of Illinois, Urbana 61801.
Biochemistry. 1994 Nov 8;33(44):13013-21. doi: 10.1021/bi00248a010.
The heme-copper oxidase superfamily contains all of the mammalian mitochondrial cytochrome c oxidases, as well as most prokaryotic respiratory oxidases. All members of the superfamily have a subunit homologous to subunit I of the mammalian cytochrome c oxidases. This subunit provides the amino acid ligands to a low-spin heme component as well as to a heme-copper binuclear center, which is the site where dioxygen is reduced to water. The amino acid sequence of transmembrane helix VI of subunit I is the most highly conserved within the superfamily. Previous efforts have demonstrated that one of the residues in this region, H284, is critical for oxidase activity and for the assembly of CuB. This paper presents the analysis of additional site-directed mutants in which other highly conserved residues in helix VI (P285, E286, Y288, and P293) have been substituted. Most of the mutants are enzymatically inactive. Structural perturbations reported by Fourier transform infrared absorption difference spectroscopy of CO adducts of the mutant oxidases confirm the previous suggestion that this region is adjactent to CuB. Furthermore, the analysis of five different substitutions for Y288 indicates that all lack CuB. On the basis of these data, it is proposed that Y288 may be a CuB ligand along with H333, H334, and H284, and a plausible molecular model of the CuB site is presented.
血红素-铜氧化酶超家族包含所有哺乳动物线粒体细胞色素c氧化酶以及大多数原核生物呼吸氧化酶。该超家族的所有成员都有一个与哺乳动物细胞色素c氧化酶亚基I同源的亚基。这个亚基为低自旋血红素成分以及血红素-铜双核中心提供氨基酸配体,而双核中心是氧气被还原为水的位点。亚基I跨膜螺旋VI的氨基酸序列在超家族中是最保守的。先前的研究表明,该区域中的一个残基H284对氧化酶活性和CuB的组装至关重要。本文介绍了对其他定点突变体的分析,其中螺旋VI中的其他高度保守残基(P285、E286、Y288和P293)已被替换。大多数突变体没有酶活性。突变氧化酶的CO加合物的傅里叶变换红外吸收差光谱报告的结构扰动证实了先前的推测,即该区域与CuB相邻。此外,对Y288的五种不同替换的分析表明,所有这些替换都缺乏CuB。基于这些数据,有人提出Y288可能与H333、H334和H284一起作为CuB配体,并提出了一个合理的CuB位点分子模型。