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Zinc-binding to the cytoplasmic PAS domain regulates the essential WalK histidine kinase of Staphylococcus aureus

机译:与细胞质PAS结构域的锌结合调节金黄色葡萄球菌的基本步行组氨酸激酶

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WalKR (YycFG) is the only essential two-component regulator in the human pathogen Staphylococcus aureus. WalKR regulates peptidoglycan synthesis, but this function alone does not explain its essentiality. Here, to further understand WalKR function, we investigate a suppressor mutant that arose when WalKR activity was impaired; a histidine to tyrosine substitution (H271Y) in the cytoplasmic Per-Arnt-Sim (PASsupCYT/sup) domain of the histidine kinase WalK. Introducing the WalKsupH271Y/sup mutation into wild-type S. aureus activates the WalKR regulon. Structural analyses of the WalK PASsupCYT/sup domain reveal a metal-binding site, in which a zinc ion (Znsup2+/sup) is tetrahedrally-coordinated by four amino acids including H271. The WalKsupH271Y/sup mutation abrogates metal binding, increasing WalK kinase activity and WalR phosphorylation. Thus, Znsup2+/sup-binding negatively regulates WalKR. Promoter-reporter experiments using S. aureus confirm Znsup2+/sup sensing by this system. Identification of a metal ligand recognized by the WalKR system broadens our understanding of this critical S. aureus regulon.
机译:Walkr(YYCFG)是人病原体金黄色葡萄球菌中唯一必要的双组分调节剂。 Walkr调节肽聚糖的合成,但仅此功能并未解释其本质。在这里,为了进一步了解Walkr功能,我们研究了人行力活动受损时出现的抑制突变体;组细胞蛋白酶Per-ARNT-SIM(PAS CYT )结构域的酪氨酸取代(H271Y)的组氨酸。将步行 h271y 突变介绍到野生型的s. aureus中激活了Walkr Regulon。步行PAS cyt 结构域的结构分析显示了金属结合位点,其中锌离子(Zn 2 + )通过包括H271的四个氨基酸的四面氨基酸。步行 h271y 突变废除金属结合,增加步行激酶活性和walr磷酸化。因此,Zn 2 + - 缠绕负调节Walkr。推动者 - 记者使用S. aureus的实验通过该系统确认Zn 2 + 感测。识别受人行道系统认可的金属配体拓宽了我们对这项关键的金黄色葡萄球菌的理解。

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