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半胱氨酸 J 黄素还原酶在依赖钼辅因子的大肠杆菌对 6-N-羟基氨基嘌呤抗性中的作用。

Role for CysJ flavin reductase in molybdenum cofactor-dependent resistance of Escherichia coli to 6-N-hydroxylaminopurine.

机构信息

Laboratory of Molecular Genetics, MD E3-01, National Institute of Environmental Health Sciences, 111 TW Alexander Drive, Research Triangle Park, NC 27709, USA.

出版信息

J Bacteriol. 2010 Apr;192(8):2026-33. doi: 10.1128/JB.01438-09. Epub 2010 Jan 29.

Abstract

We have previously described a novel Escherichia coli detoxification system for the removal of toxic and mutagenic N-hydroxylated nucleobases and related compounds that requires the molybdenum cofactor. Two subpathways (ycbX and yiiM) were identified, each employing a novel molybdo activity capable of inactivating N-hydroxylated compounds by reduction to the corresponding amine. In the present study, we identify the cysJ gene product as one additional component of this system. While the CysJ protein has been identified as the NADPH:flavin oxidoreductase component of the CysJI sulfite reductase complex (CysJ(8)I(4)), we show that the role of CysJ in base analog detoxification is unique and independent of CysI and sulfite reductase. We further show that CysJ functions as a specific partner of the YcbX molybdoenzyme. We postulate that the function of CysJ in this pathway is to provide, via its NADPH:flavin reductase activity, the reducing equivalents needed for the detoxification reaction at the YcbX molybdocenter. In support of the proposed interaction of the CysJ and YcbX proteins, we show that an apparent CysJ-YcbX "hybrid" protein from two Vibrio species is capable of compensating for a double cysJ ycbX defect in E. coli.

摘要

我们之前描述了一种新型的大肠杆菌解毒系统,用于去除有毒和诱变的 N-羟化碱基和相关化合物,该系统需要钼辅因子。鉴定出了两个亚途径(ycbX 和 yiiM),每个亚途径都采用了一种新的钼活性,能够通过还原为相应的胺来使 N-羟化化合物失活。在本研究中,我们确定了 cysJ 基因产物是该系统的另一个组成部分。虽然 CysJ 蛋白已被鉴定为 CysJI 亚硫酸盐还原酶复合物(CysJ(8)I(4))的 NADPH:黄素氧化还原酶组分,但我们表明 CysJ 在碱基类似物解毒中的作用是独特的,与 CysI 和亚硫酸盐还原酶无关。我们进一步表明 CysJ 作为 YcbX 钼酶的特定伴侣发挥作用。我们推测 CysJ 在该途径中的功能是通过其 NADPH:黄素还原酶活性提供 YcbX 钼中心解毒反应所需的还原当量。为了支持 CysJ 和 YcbX 蛋白的拟议相互作用,我们表明来自两种弧菌的 CysJ 和 YcbX 蛋白的明显“杂交”蛋白能够补偿大肠杆菌中双 cysJ ycbX 缺陷。

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