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硫氧还蛋白2是一种氧化应激诱导蛋白,含有一个高亲和力锌结合位点。

Thioredoxin 2, an oxidative stress-induced protein, contains a high affinity zinc binding site.

作者信息

Collet Jean-Francois, D'Souza Jonathan Conrad, Jakob Ursula, Bardwell James C A

机构信息

Department of Molecular, Cellular and Developmental Biology, University of Michigan, Ann Arbor, Michigan 48109-1048, USA.

出版信息

J Biol Chem. 2003 Nov 14;278(46):45325-32. doi: 10.1074/jbc.M307818200. Epub 2003 Sep 2.

Abstract

Two thioredoxins have been described in Escherichia coli, TrxA and Trx2. Both thioredoxins are capable of reducing disulfide bonds using a conserved pair of cysteine residues present in a WCGPC motif. A number of unique structural and regulatory features distinguish the Trx2 subfamily from the much larger TrxA family. The Trx2 subfamily has an additional N-terminal domain of +/- 30 residues, which contains two additional conserved CXXC motifs. Moreover, the gene coding for Trx2 is under control of the oxidative stress transcription factor OxyR in E. coli. This suggests that Trx2 may play a role in the cellular defense against oxidative stress. We show here that Trx2 contains zinc in a 1:1 stoichiometry, making it the first identified zinc-binding thioredoxin. The zinc atom is coordinated by the four cysteines of the two N-terminal CXXC motifs. The zinc center of Trx2 binds zinc with a very high affinity (Ka of >1018 m-1). We show that in vitro oxidation of the zinc binding cysteines by H2O2 releases the zinc and induces a conformational change. The zinc-free protein conserves its reductase activity. Altogether, our results suggest that the zinc center might play the role of a redox switch, changing a yet to be identified activity.

摘要

在大肠杆菌中已发现两种硫氧还蛋白,即TrxA和Trx2。这两种硫氧还蛋白都能够利用WCGPC基序中存在的一对保守半胱氨酸残基来还原二硫键。Trx2亚家族与规模大得多的TrxA家族在许多独特的结构和调控特征上存在差异。Trx2亚家族有一个额外的N端结构域,包含约30个残基,其中还有两个保守的CXXC基序。此外,在大肠杆菌中,编码Trx2的基因受氧化应激转录因子OxyR的调控。这表明Trx2可能在细胞抵御氧化应激中发挥作用。我们在此表明,Trx2以1:1的化学计量比结合锌,使其成为首个被鉴定出的锌结合硫氧还蛋白。锌原子由两个N端CXXC基序中的四个半胱氨酸配位。Trx2的锌中心以非常高的亲和力(Ka>1018 m-1)结合锌。我们表明,在体外,H2O2对结合锌的半胱氨酸进行氧化会释放锌并诱导构象变化。无锌蛋白保留其还原酶活性。总之,我们的结果表明锌中心可能起到氧化还原开关的作用,改变一种尚未确定的活性。

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