首页> 美国卫生研究院文献>Journal of Bacteriology >Interplay of the Czc System and Two P-Type ATPases in Conferring Metal Resistance to Ralstonia metallidurans
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Interplay of the Czc System and Two P-Type ATPases in Conferring Metal Resistance to Ralstonia metallidurans

机译:Czc系统和两个P型ATP酶的相互作用赋予金属抗罗氏菌

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摘要

Cadmium and zinc are removed from cells of Ralstonia metallidurans by the CzcCBA efflux pump and by two soft-metal-transporting P-type ATPases, CadA and ZntA. The czcCBA genes are located on plasmid pMOL30, and the cadA and zntA genes are on the bacterial chromosome. Expression of zntA from R. metallidurans in Escherichia coli predominantly mediated resistance to zinc, and expression of cadA predominantly mediated resistance to cadmium. Both transporters decreased the cellular content of zinc or cadmium in this host. In the plasmid-free R. metallidurans strain AE104, single gene deletions of cadA or zntA had only a moderate effect on cadmium and zinc resistance, but zinc resistance decreased 6-fold and cadmium resistance decreased 350-fold in double deletion strains. Neither single nor double gene deletions affected zinc resistance in the presence of czcCBA. In contrast, cadmium resistance of the cadA zntA double mutant could be elevated only partially by the presence of CzcCBA. lacZ reporter gene fusions indicated that expression of cadA was induced by cadmium but not by zinc in R. metallidurans strain AE104. In the absence of the zntA gene, expression of cadA occurred at lower cadmium concentrations and zinc now served as an inducer. In contrast, expression of zntA was induced by both zinc and cadmium, and the induction pattern did not change in the presence or absence of CadA. However, expression of both genes, zntA and cadA, was diminished in the presence of CzcCBA. This indicated that CzcCBA efficiently decreased cytoplasmic cadmium and zinc concentrations. It is discussed whether these data favor a model in which the cations are removed either from the cytoplasm or the periplasm by CzcCBA.
机译:通过CzcCBA外排泵和两个运输软金属的P型ATP酶CadA和ZntA,从金属裂殖单胞菌的细胞中去除了镉和锌。 czcCBA基因位于质粒pMOL30上,而cadA和zntA基因位于细菌染色体上。在大肠杆菌中,金属利兹氏菌中zntA的表达主要介导了对锌的抗性,而cadA的表达则主要介导了对镉的抗性。两种转运蛋白均降低了该宿主中锌或镉的细胞含量。在无质粒的金黄色葡萄球菌菌株AE104中,cadA或zntA的单基因缺失仅对镉和锌的抗性产生中度影响,但是在双缺失菌株中,锌的抗性下降6倍,镉抗性下降350倍。在czcCBA存在下,单基因或双基因缺失均不会影响锌抗性。相反,CzcCBA的存在只能部分提高cadA zntA双突变体对镉的抗性。 lacZ报告基因融合表明, cadA 的表达受镉的诱导,而不受锌 R 的诱导。 metallidurans 菌株AE104。在缺少 zntA 基因的情况下, cadA 的表达在较低的镉浓度下发生,而锌现在起诱导作用。相反,锌和镉都诱导了 zntA 的表达,并且在有或没有CadA的情况下,诱导模式都没有改变。但是,存在CzcCBA时, zntA cadA 这两个基因的表达均降低。这表明CzcCBA有效降低了细胞质中镉和锌的浓度。讨论了这些数据是否有利于通过CzcCBA从细胞质或周质中去除阳离子的模型。

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