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关于亚基M在细胞色素cbb氧化酶中的作用

On the role of subunit M in cytochrome cbb oxidase.

作者信息

Carvalheda Catarina A, Pisliakov Andrei V

机构信息

Computational Biology, School of Life Sciences, University of Dundee, Dow Street, Dundee, DD1 5EH, United Kingdom; Physics, School of Science and Engineering, University of Dundee, Nethergate, Dundee, DD1 4HN, United Kingdom.

出版信息

Biochem Biophys Res Commun. 2017 Sep 9;491(1):47-52. doi: 10.1016/j.bbrc.2017.07.031. Epub 2017 Jul 8.

Abstract

Cytochrome cbb (or C-type) oxidases are a highly divergent group and the least studied members of the heme-copper oxidases (HCOs) superfamily. HCOs couple the reduction of oxygen at the end of the respiratory chain to the active proton translocation across the membrane, contributing to establishment of an electrochemical gradient essential for ATP synthesis. Cbb oxidases exhibit unique structural and functional features and have an essential role in the metabolism of many clinically relevant human pathogens. Such characteristics make them a promising therapeutic target. Three subunits, N, O and P, comprise the core cbb complex, with N, the catalytic subunit, being highly conserved among all members of the HCO superfamily, including the A-type (aa, mitochondrial-like) oxidases. An additional fourth subunit containing a single transmembrane (TM) helix was present in the first crystal structure of cbb. This TM segment was recently proposed to be part of a novel protein CcoM, which was shown to have a putative role in the complex stability and assembly. In this work, we performed large-scale all-atom molecular dynamics simulations of the CcoNOPM complex to further characterize the interactions between subunit M and the core subunits and to determine whether the presence of the fourth subunit influences the water/proton channels previously described for the core complex. The previously proposed putative CcoNOPH complex is also assessed, and the potential functional redundancy of CcoM and CcoQ is discussed.

摘要

细胞色素cbb(或C型)氧化酶是一个高度多样化的群体,也是血红素-铜氧化酶(HCOs)超家族中研究最少的成员。HCOs将呼吸链末端的氧还原与跨膜的主动质子转运偶联起来,有助于建立ATP合成所必需的电化学梯度。Cbb氧化酶具有独特的结构和功能特征,在许多临床相关人类病原体的代谢中起着重要作用。这些特性使其成为一个有前景的治疗靶点。三个亚基N、O和P组成了核心cbb复合体,其中催化亚基N在HCO超家族的所有成员中高度保守,包括A型(aa,线粒体样)氧化酶。在cbb的第一个晶体结构中存在一个额外的包含单个跨膜(TM)螺旋的第四亚基。最近有人提出这个TM片段是一种新型蛋白质CcoM的一部分,该蛋白质在复合体的稳定性和组装中具有假定作用。在这项工作中,我们对CcoNOPM复合体进行了大规模的全原子分子动力学模拟,以进一步表征亚基M与核心亚基之间的相互作用,并确定第四亚基的存在是否会影响先前描述的核心复合体的水/质子通道。我们还评估了先前提出的假定的CcoNOPH复合体,并讨论了CcoM和CcoQ的潜在功能冗余。

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