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一种镍钴感应的ArsR-SmtB家族阻遏蛋白。胞质溶胶和效应物结合位点对金属选择性的贡献。

A nickel-cobalt-sensing ArsR-SmtB family repressor. Contributions of cytosol and effector binding sites to metal selectivity.

作者信息

Cavet Jennifer S, Meng Wenmao, Pennella Mario A, Appelhoff Rebecca J, Giedroc David P, Robinson Nigel J

机构信息

Biosciences, Medical School, University of Newcastle, Newcastle NE2 4HH, United Kingdom.

出版信息

J Biol Chem. 2002 Oct 11;277(41):38441-8. doi: 10.1074/jbc.M207677200. Epub 2002 Aug 5.

Abstract

NmtR from Mycobacterium tuberculosis is a new member of the ArsR-SmtB family of metal sensor transcriptional repressors. NmtR binds to the operator-promoter of a gene encoding a P(1) type ATPase (NmtA), repressing transcription in vivo except in medium supplemented with nickel or, to some extent, cobalt. In a cyanobacterial host, Synechococcus PCC 7942 strain R2-PIM8(smt), NmtR-mediated repression is alleviated by cobalt but not nickel or zinc addition, while the related sensor SmtB responds exclusively to zinc. Quantification of the number of atoms of nickel per cell shows that NmtR nickel sensitivity correlates with cytosolic nickel contents. Differential metal discrimination in a common cytosol by SmtB (zinc) and NmtR (cobalt) is not simply explained by affinities at equilibrium; although NmtR does bind nickel substantially more tightly than SmtB, it has a higher affinity for zinc than for cobalt and binds cobalt more weakly than SmtB. SmtB is known to bind and sense zinc at interhelical four-coordinate, tetrahedral sites across the C-terminal alpha 5 helices, while absorption spectroscopy of Co(II)- and Ni(II)-substituted NmtR reveals five- and six-coordinate metal complexes. Site-directed mutagenesis identifies six potential cobalt/nickel ligands that are obligatory for inducer recognition but not repression by NmtR, four of which (Asp(91), His(93), His(104), His(107)) align with alpha 5 ligands of SmtB with two additional His provided by a carboxyl-terminal "extension" (designated alpha 5C). Gel retardation assays reveal that zinc does not allosterically regulate NmtR-DNA binding at concentrations where lower affinity cobalt does. These data suggest that two additional ligands form hexacoordinate metal complexes and are crucial for driving allosteric regulation of DNA binding by NmtR, thereby allowing NmtR to preferentially sense metals that favor higher coordination numbers relative to SmtB.

摘要

结核分枝杆菌的NmtR是金属传感转录阻遏物ArsR - SmtB家族的新成员。NmtR与编码P(1)型ATP酶(NmtA)的基因的操纵子 - 启动子结合,在体内抑制转录,除非在补充有镍或在一定程度上补充有钴的培养基中。在蓝细菌宿主集胞藻PCC 7942菌株R2 - PIM8(smt)中,添加钴可减轻NmtR介导的阻遏作用,而添加镍或锌则不能,而相关的传感蛋白SmtB仅对锌有反应。对每个细胞中镍原子数的定量分析表明,NmtR对镍的敏感性与胞质镍含量相关。SmtB(锌)和NmtR(钴)在共同胞质溶胶中对金属的差异识别不能简单地用平衡亲和力来解释;尽管NmtR确实比SmtB更紧密地结合镍,但它对锌的亲和力高于对钴的亲和力,且比SmtB更弱地结合钴。已知SmtB在C末端α5螺旋间的螺旋内四配位四面体位点结合并感知锌,而Co(II)和Ni(II)取代的NmtR的吸收光谱显示为五配位和六配位金属配合物。定点诱变鉴定出六个潜在的钴/镍配体,它们对于诱导物识别是必需的,但不是NmtR抑制所必需的,其中四个(Asp(91)、His(93)、His(104)、His(107))与SmtB的α5配体对齐,另外两个His由羧基末端“延伸”(指定为α5C)提供。凝胶阻滞分析表明,在较低亲和力的钴起作用的浓度下,锌不会变构调节NmtR与DNA的结合。这些数据表明,另外两个配体形成六配位金属配合物,对于驱动NmtR对DNA结合的变构调节至关重要,从而使NmtR相对于SmtB能够优先感知有利于更高配位数的金属。

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