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Molecular characterization of the copper transport system in Staphylococcus aureus

机译:金黄色葡萄球菌铜运输系统的分子表征

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The Staphylococcus aureus copA gene codes for a putative copper-translocating P-type ATPase and the downstream copZ gene codes for a copper chaperone. Genome database analyses demonstrate that these copper transport genes are highly conserved in S. aureus. The expression of copA and copZ was inducible by copper and to some extent by ferric and lead ions. A mutant strain containing a partially deleted copA gene was more sensitive than the parent strain to copper, ferric and lead ions. The copper-sensitive phenotype was due to the accumulation of intracellular copper and thus the copA product is involved in the export of copper ions. The metal-sensitive phenotype of the mutant was complemented in trans by a 2.7?kbp DNA containing copA. We have cloned and overexpressed the metal-binding domains of CopA and CopZ and have shown by site-directed mutagenesis that the cysteine residues in the CXXC metal-binding motif in CopA are involved in copper binding and thus play an important role in copper transport in S. aureus.
机译:用于铜伴侣的推定铜转化P型ATP酶和下游COPZ基因码的金黄色葡萄球菌COPA基因码。基因组数据库分析表明,这些铜运输基因在金黄色葡萄球菌中高度保守。 COPA和COPZ的表达是通过铜的诱导的,并且在某种程度上通过铁和铅离子。含有部分缺失的COPA基因的突变菌株比母体菌株对铜,铁和铅离子更敏感。铜敏感的表型是由于细胞内铜的积累,因此COPA产品参与了铜离子的出口。突变体的金属敏感表型通过含COPA的2.7 kBP DNA互补。我们已经克隆并过度表达了Copa和Copz的金属结合结构域,并通过点定向诱变表明,CXXC金属结合基序中COPA中的半胱氨酸残基参与铜结合,从而在铜运输中起重要作用金黄色葡萄球菌。

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