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来自蓝藻鱼腥藻的一个锌(II)/铅(II)/镉(II)诱导型操纵子受AztR调控,AztR是一种α3N ArsR/SmtB金属调节蛋白。

A zinc(II)/lead(II)/cadmium(II)-inducible operon from the Cyanobacterium anabaena is regulated by AztR, an alpha3N ArsR/SmtB metalloregulator.

作者信息

Liu Tong, Golden James W, Giedroc David P

机构信息

Department of Biochemistry and Biophysics, 2128 TAMU, Texas A&M University, College Station, Texas 77843-2128, USA.

出版信息

Biochemistry. 2005 Jun 21;44(24):8673-83. doi: 10.1021/bi050450+.

Abstract

A novel Zn(II)/Pb(II)/Cd(II)-responsive operon that consists of genes encoding a Zn(II)/Pb(II) CPx-ATPase efflux pump (aztA) and a Zn(II)/Cd(II)/Pb(II)-specific SmtB/ArsR family repressor (aztR) has been identified and characterized from the cyanobacterium Anabaena PCC 7120. In vivo real time quantitative RT-PCR assays reveal that both aztR and aztA expression are induced by divalent metal ions Zn(II), Cd(II), and Pb(II) but not by other divalent [Co(II), Ni(II)] or monovalent metal ions [Cu(I) and Ag(I)]. The introduction of a plasmid containing the azt operon into a Zn(II)/Cd(II)-hypersensitive Escherichia coli strain GG48 functionally restores Zn(II) and Pb(II) resistance with a limited effect on Cd(II) resistance. Gel mobility shift assays and aztR O/P-lacZ induction experiments confirm that AztR is the metal-regulated repressor of this operon. In vitro biochemical and mutagenesis studies indicate that AztR contains a sole metal-binding site, designated the alpha3N site, that binds Zn(II), Cd(II), and Pb(II) with a high affinity. Optical absorption spectra of Co(II)- and Cd(II)-substituted AztR and (113)Cd NMR spectroscopy of (113)Cd(II)-substituted AztR reveal that the sole alpha3N site in AztR is a CadC-like distorted tetrahedral S(3)(N,O) metal site. The first metal-coordination shell in the AztR alpha3N site differs from other alpha3N family members that sense Cd(II)/Pb(II) and those alpha5 repressors that sense Zn(II)/Co(II). Our results reveal that the alpha3N site in AztR mediates derepression of the azt operon in the presence of Zn(II), as well as Cd(II) and Pb(II); this might have provided Anabaena with an evolutionary advantage to adapt to heavy-metal-rich environments, while maintaining homeostasis of an essential metal ion, Zn(II).

摘要

从蓝藻鱼腥藻Anabaena PCC 7120中鉴定并表征了一种新型的锌(II)/铅(II)/镉(II)响应操纵子,它由编码锌(II)/铅(II)CPx - ATP酶外排泵(aztA)和锌(II)/镉(II)/铅(II)特异性SmtB/ArsR家族阻遏蛋白(aztR)的基因组成。体内实时定量RT - PCR分析表明,aztR和aztA的表达均由二价金属离子锌(II)、镉(II)和铅(II)诱导,而不由其他二价[钴(II)、镍(II)]或一价金属离子[铜(I)和银(I)]诱导。将含有azt操纵子的质粒导入对锌(II)/镉(II)高度敏感的大肠杆菌菌株GG48中,在功能上恢复了对锌(II)和铅(II)的抗性,但对镉(II)抗性的影响有限。凝胶迁移率变动分析和aztR O/P - lacZ诱导实验证实AztR是该操纵子的金属调节阻遏蛋白。体外生化和诱变研究表明,AztR含有一个唯一的金属结合位点,称为α3N位点,它以高亲和力结合锌(II)、镉(II)和铅(II)。钴(II)和镉(II)取代型AztR的光吸收光谱以及镉(II)取代型AztR的(113)Cd NMR光谱表明,AztR中唯一的α3N位点是一个类似CadC的扭曲四面体S(3)(N,O)金属位点。AztR α3N位点中的第一个金属配位壳层不同于其他感知镉(II)/铅(II)的α3N家族成员以及那些感知锌(II)/钴(II)的α5阻遏蛋白。我们的结果表明,AztR中的α3N位点在锌(II)以及镉(II)和铅(II)存在时介导azt操纵子的去阻遏;这可能为鱼腥藻提供了一种进化优势,使其能够适应富含重金属的环境,同时维持必需金属离子锌(II)的体内平衡。

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