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The zntA gene of Escherichia coli encodes a Zn(II)-translocating P-type ATPase

机译:大肠杆菌的zntA基因编码Zn(II)易位的P型ATPase

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摘要

The first Zn(II)-translocating P-type ATPase has been identified as the product of o732, a potential gene identified in the sequencing of the Escherichia coli genome. This gene, termed zntA, was disrupted by insertion of a kanamycin gene through homologous recombination. The mutant strain exhibited hypersensitivity to zinc and cadmium salts but not salts of other metals, suggesting a role in zinc homeostasis in E. coli. Everted membrane vesicles from a wild-type strain accumulated 65Zn(II) and 109Cd(II) by using ATP as an energy source. Transport was sensitive to vanadate, an inhibitor of P-type ATPases. Membrane vesicles from the zntA∷kan strain did not accumulate those metal ions. Both the sensitive phenotype and transport defect of the mutant were complemented by expression of zntA on a plasmid.
机译:第一个Zn(II)易位P型ATP酶已被鉴定为o732的产物,o732是在大肠杆菌基因组测序中鉴定的潜在基因。通过同源重组插入卡那霉素基因可破坏称为zntA的该基因。该突变菌株对锌和镉盐表现出超敏性,但对其他金属的盐则不敏感,表明在大肠杆菌中锌稳态​​中起作用。野生型菌株的外翻膜囊泡以ATP为能源积累了 65 Zn(II)和 109 Cd(II)。运输对钒酸盐(P型ATP酶的抑制剂)敏感。来自zntA∷kan菌株的膜囊泡没有积累那些金属离子。突变体的敏感表型和运输缺陷都通过在质粒上表达zntA来弥补。

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