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来自球形红细菌的PrrC是真核生物Sco蛋白的同源物,是一种铜结合蛋白,可能具有硫醇-二硫键氧化还原酶活性。

PrrC from Rhodobacter sphaeroides, a homologue of eukaryotic Sco proteins, is a copper-binding protein and may have a thiol-disulfide oxidoreductase activity.

作者信息

McEwan Alastair G, Lewin Allison, Davy Sharon L, Boetzel Ruth, Leech Andrew, Walker Daniel, Wood Tania, Moore Geoffrey R

机构信息

School of Molecular and Microbial Sciences, The University of Queensland, 4072, Brisbane, Qld, Australia.

出版信息

FEBS Lett. 2002 May 8;518(1-3):10-6. doi: 10.1016/s0014-5793(02)02532-2.

Abstract

PrrC from Rhodobacter sphaeroides provides the signal input to a two-component signal transduction system that senses changes in oxygen tension and regulates expression of genes involved in photosynthesis (Eraso, J.M. and Kaplan, S. (2000) Biochemistry 39, 2052-2062; Oh, J.-I. and Kaplan, S. (2000) EMBO J. 19, 4237-4247). It is also a homologue of eukaryotic Sco proteins and each has a C-x-x-x-C-P sequence. In mitochondrial Sco proteins these cysteines appear to be essential for the biogenesis of the CuA centre of respiratory cytochrome oxidase. Overexpression and purification of a water-soluble and monomeric form of PrrC has provided sufficient material for a chemical and spectroscopic study of the properties of the four cysteine residues of PrrC, and its ability to bind divalent cations, including copper. PrrC expressed in the cytoplasm of Escherichia coli binds Ni2+ tightly and the data are consistent with a mononuclear metal site. Following removal of Ni2+ and formation of renatured metal-free rPrrC (apo-PrrC), Cu2+ could be loaded into the reduced form of PrrC to generate a protein with a distinctive UV-visible spectrum, having absorbance with a lambda(max) of 360 nm. The copper:PrrC ratio is consistent with the presence of a mononuclear metal centre. The cysteines of metal-free PrrC oxidise in the presence of air to form two intramolecular disulfide bonds, with one pair being extremely reactive. The cysteine thiols with extreme O2 sensitivity are involved in copper binding in reduced PrrC since the same copper-loaded protein could not be generated using oxidised PrrC. Thus, it appears that PrrC, and probably Sco proteins in general, could have both a thiol-disulfide oxidoreductase function and a copper-binding role.

摘要

来自球形红杆菌的PrrC为一个双组分信号转导系统提供信号输入,该系统可感知氧张力变化并调节参与光合作用的基因的表达(埃拉索,J.M.和卡普兰,S.(2000年)《生物化学》39卷,2052 - 2062页;吴,J.-I.和卡普兰,S.(2000年)《欧洲分子生物学组织杂志》19卷,4237 - 4247页)。它也是真核生物Sco蛋白的同源物,且每个都有一个C - x - x - x - C - P序列。在线粒体Sco蛋白中,这些半胱氨酸似乎对呼吸细胞色素氧化酶的CuA中心的生物合成至关重要。PrrC的水溶性单体形式的过表达和纯化提供了足够的材料,用于对PrrC的四个半胱氨酸残基的性质及其结合二价阳离子(包括铜)的能力进行化学和光谱研究。在大肠杆菌细胞质中表达的PrrC紧密结合Ni2 +,数据与单核金属位点一致。去除Ni2 +并形成复性的无金属rPrrC(脱辅基PrrC)后,Cu2 +可加载到还原形式的PrrC中,以产生具有独特紫外可见光谱的蛋白质,其吸光度的λ(max)为360 nm。铜与PrrC的比例与单核金属中心的存在一致。无金属PrrC的半胱氨酸在空气中氧化形成两个分子内二硫键,其中一对极具反应性。具有极高O2敏感性的半胱氨酸硫醇参与还原型PrrC中的铜结合,因为使用氧化型PrrC无法生成相同的载铜蛋白。因此,似乎PrrC以及一般的Sco蛋白可能同时具有硫醇 - 二硫键氧化还原酶功能和铜结合作用。

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