首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Functional characterization of a cadmium resistance operon in Staphylococcus aureus ATCC12600: CadC does not function as a repressor
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Functional characterization of a cadmium resistance operon in Staphylococcus aureus ATCC12600: CadC does not function as a repressor

机译:金黄色葡萄球菌ATCC12600中抗镉操纵子的功能表征:CadC不能作为阻遏物

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摘要

Sequencing of a cadmium resistance operon from a Staphylococcus aureus ATCC12600 plasmid revealed that it is identical to a cadCA operon found in MRSA strains. Compared to plasmid-cured and cadC-mutant strains, cadC-positive ATCC12600 cells had increased resistance to cadmium (1mgml(-1) cadmium sulfate) and zinc (4mgml(-1) zinc sulfate), but not to other metal ions. After growth in media containing 20 mu gml(-1) cadmium sulfate, cadC-mutant cells contained more intracellular cadmium than cadC-positive ATCC12600 cells, suggesting that cadC absence results in impaired cadmium efflux. Electrophoretic mobility shift assays were performed with CadC proteins encoded by the S. aureus ATCC12600 plasmid and by the cadC gene of pI258, which is known to act as a transcriptional repressor and shares only 47% protein sequence identity with ATCC12600 CadC. Mobility shifts occurred when pI258 CadC protein was incubated with the promoter DNA-regions from the pI258 and S. aureus ATCC12600 cadCA operons, but did not occur with S. aureus ATCC12600 CadC protein, indicating that the ATCC12600 CadC protein does not interact with promoter region DNA. This cadCA operon, found in MRSA strains and previously functionally uncharacterized, increases resistance to cadmium and zinc by an efflux mechanism, and CadC does not function as a transcriptional repressor.
机译:从金黄色葡萄球菌ATCC12600质粒的抗镉操纵子测序表明,它与MRSA菌株中的cadCA操纵子相同。与质粒固化和cadC突变株相比,cadC阳性ATCC12600细胞对镉(1mgml(-1)硫酸镉)和锌(4mgml(-1)硫酸锌)的抵抗力增加,但对其他金属离子的抵抗力却增加。在含有20μgml(-1)硫酸镉的培养基中生长后,cadC突变细胞比cadC阳性ATCC12600细胞含有更多的细胞内镉,这表明cadC缺失会导致镉外流受损。用金黄色葡萄球菌ATCC12600质粒和pI258的cadC基因编码的CadC蛋白进行电泳迁移率迁移分析,已知该蛋白可作为转录阻遏物,与ATCC12600 CadC仅共享47%的蛋白质序列同一性。当将pI258 CadC蛋白与pI258和金黄色葡萄球菌ATCC12600 cadCA操纵子的启动子DNA区域一起孵育时发生迁移,但金黄色葡萄球菌ATCC12600 CadC蛋白没有发生迁移,这表明ATCC12600 CadC蛋白不与启动子区域相互作用脱氧核糖核酸。该cadCA操纵子存在于MRSA菌株中,以前没有功能,可通过外排机制提高对镉和锌的抗性,而CadC不能作为转录阻遏物。

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