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首页> 外文期刊>FEMS Microbiology Reviews >The SmtB/ArsR family of metalloregulatory transcriptional repressors: structural insights into prokaryotic metal resistance [Review]
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The SmtB/ArsR family of metalloregulatory transcriptional repressors: structural insights into prokaryotic metal resistance [Review]

机译:SmtB / ArsR系列的金属调控转录阻遏物:对原核金属抗性的结构见解[综述]

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The SmtB/ArsR family of prokaryotic metalloregulatory transcriptional repressors represses the expression of operons linked to stress-inducing concentrations of di- and multivalent heavy metal ions. Derepression results from direct binding of metal ions by these homodimeric 'metal sensor' proteins. An evolutionary analysis, coupled with comparative structural and spectroscopic studies of six SmtB/ArsR family members, suggests a unifying 'theme and variations' model, in which individual members have evolved distinct metal selectivity profiles by alteration of one or both of two structurally distinct metal coordination sites. These two metal sites are designated alpha3N (or alpha3) and alpha5 (or alpha5C), named for the location of the metal binding ligands within the known or predicted secondary structure of individual family members. The alpha3N/alpha3 sensors, represented by Staphylococcus aureus pI258 CadC, Listeria monocytogenes CadC and Escherichia coli ArsR, form cysteine thiolate-rich coordination complexes (S-3 or S-4) with thiophilic heavy metal pollutants including Cd(II), Pb(II), Bi(III) and As(III) via inter-subunit coordination by ligands derived from the alpha3 helix and the N-terminal 'arm' (CadCs) or from the alpha3 helix only (ArsRs). The alpha5/alpha5C sensors Synechococcus SmtB, Synechocystis ZiaR, S. aureus CzrA, and Mycobacterium tuberculosis NmtR form metal complexes with biologically required metal ions Zn(II), Co(II) and Ni(II) characterized by four or more coordination bonds to a mixture of histidine and carboxylate ligands derived from the C-terminal alpha5 helices on opposite subunits. Direct binding of metal ions to either the alpha3N or alpha5 sites leads to strong, negative allosteric regulation of repressor operator/promoter binding affinity, consistent with a simple model for derepression. We hypothesize that distinct allosteric pathways for metal sensing have co-evolved with metal specificities of distinct alpha3N and alpha5 coordination complexes. (C) 2003 Federation of European Microbiological Societies. Published by Elsevier Science B.V. All rights reserved. [References: 64]
机译:SmtB / ArsR家族的原核金属调控转录阻遏物抑制操纵子的表达,操纵子的表达与引起压力的二价和多价重金属离子浓度有关。抑制作用是由于这些同二聚体的“金属传感器”蛋白直接结合金属离子而引起的。进化分析,加上对六个SmtB / ArsR家族成员的比较结构和光谱学研究,提出了一个统一的“主题和变异”模型,其中单个成员通过改变两种结构上不同的金属中的一种或两种,形成了不同的金属选择性分布协调站点。这两个金属位点被命名为alpha3N(或alpha3)和alpha5(或alpha5C),它们是根据金属结合配体在各个家族成员已知或预测的二级结构中的位置命名的。以金黄色葡萄球菌pI258 CadC,单核细胞增生李斯特菌CadC和大肠杆菌ArsR为代表的alpha3N / alpha3传感器与富含Cd(II),Pb( II),Bi(III)和As(III)通过衍生自alpha3螺旋和N末端“臂”(CadCs)或仅来自alpha3螺旋(ArsRs)的配体的亚基间配位。 alpha5 / alpha5C传感器Synechococcus SmtB,Synechochocystis ZiaR,金黄色葡萄球菌CzrA和结核分枝杆菌NmtR形成金属络合物,其具有生物必需的金属离子Zn(II),Co(II)和Ni(II),其特征在于与四个或多个配位键结合组氨酸和羧酸盐配体的混合物,它们来自相反亚基上的C端alpha5螺旋。金属离子与alpha3N或alpha5位点的直接结合会导致阻遏物操纵子/启动子结合亲和力的强,负变构调节,与简单的降压模型一致。我们假设金属感测的不同的变构途径已经与不同的alpha3N和alpha5配位复合物的金属特异性共同进化。 (C)2003年欧洲微生物学会联合会。由Elsevier Science B.V.保留所有权利。 [参考:64]

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