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大肠杆菌烷基过氧化氢还原酶C末端在该酶组装和催化中的关键作用,烷基过氧化氢还原酶是缓解氧化应激所必需的一种酶。

Key roles of the Escherichia coli AhpC C-terminus in assembly and catalysis of alkylhydroperoxide reductase, an enzyme essential for the alleviation of oxidative stress.

作者信息

Dip Phat Vinh, Kamariah Neelagandan, Nartey Wilson, Beushausen Claudia, Kostyuchenko Victor A, Ng Thiam-Seng, Lok Shee-Mei, Saw Wuan Geok, Eisenhaber Frank, Eisenhaber Birgit, Grüber Gerhard

机构信息

Nanyang Technological University, School of Biological Sciences, 60 Nanyang Drive, Singapore 637551; Program in Emerging Infectious Diseases, Duke-NUS Graduate Medical School, KTP Building, 8 College Road, Singapore 169857; Center for Bioimaging Sciences, Dept. of Biological Sciences, National University of Singapore, Singapore 119077.

Bioinformatics Institute, Agency for Science, Technology and Research (A*STAR), 30 Biopolis Street, #07-01 Matrix, Singapore 138671.

出版信息

Biochim Biophys Acta. 2014 Dec;1837(12):1932-1943. doi: 10.1016/j.bbabio.2014.08.007.

Abstract

2-Cys peroxiredoxins (Prxs) are a large family of peroxidases, responsible for antioxidant function and regulation in cell signaling, apoptosis and differentiation. The Escherichia coli alkylhydroperoxide reductase (AhpR) is a prototype of the Prxs-family, and is composed of an NADH-dependent AhpF reductase (57 kDa) and AhpC (21 kDa), catalyzing the reduction of H2O2. We show that the E. coli AhpC (EcAhpC, 187 residues) forms a decameric ring structure under reduced and close to physiological conditions, composed of five catalytic dimers. Single particle analysis of cryo-electron micrographs of C-terminal truncated (EcAhpC1 -172 and EcAhpC1 -182) and mutated forms of EcAhpC reveals the loss of decamer formation, indicating the importance of the very C-terminus of AhpC in dimer to decamer transition. The crystallographic structures of the truncated EcAhpC1 -172 and EcAhpC1 -182 demonstrate for the first time that, in contrast to the reduced form, the very C-terminus of the oxidized EcAhpC is oriented away from the AhpC dimer interface and away from the catalytic redox-center, reflecting structural rearrangements during redox-modulation and -oligomerization. Furthermore, using an ensemble of different truncated and mutated EcAhpC protein constructs the importance of the very C-terminus in AhpC activity and in AhpC-AhpF assembly has been demonstrated.

摘要

2-半胱氨酸过氧化物酶(Prxs)是一大类过氧化物酶,负责细胞信号传导、细胞凋亡和分化过程中的抗氧化功能及调节作用。大肠杆菌烷基过氧化氢还原酶(AhpR)是Prxs家族的一个原型,由一个依赖NADH的AhpF还原酶(57 kDa)和AhpC(21 kDa)组成,催化过氧化氢的还原反应。我们发现,大肠杆菌AhpC(EcAhpC,187个氨基酸残基)在还原且接近生理条件下形成十聚体环状结构,由五个催化二聚体组成。对C端截短型(EcAhpC1 - 172和EcAhpC1 - 182)以及EcAhpC突变体形式的冷冻电子显微镜图像进行单颗粒分析,结果显示十聚体形成缺失,这表明AhpC的C端在二聚体向十聚体转变过程中具有重要作用。截短型EcAhpC1 - 172和EcAhpC1 - 182的晶体结构首次表明,与还原形式相比,氧化型EcAhpC的C端远离AhpC二聚体界面和催化氧化还原中心,这反映了氧化还原调节和寡聚化过程中的结构重排。此外,通过使用一系列不同的截短型和突变型EcAhpC蛋白质构建体,已证明AhpC的C端在AhpC活性和AhpC - AhpF组装中的重要性。

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