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Diversity of two-component systems: insights into the signal transduction mechanism by the Staphylococcus aureus two-component system GraSR

机译:两部分系统的多样性:深入了解信号传导机制金黄色葡萄球菌两组分系统GraSR

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摘要

The response to cationic antimicrobial peptides (CAMPs) in Staphylococcus aureus relies on a two-component system (TCS), GraSR, an auxiliary protein GraX and an ATP-binding cassette (ABC) transporter, VraF/G. To understand the signal transduction mechanism by GraSR, we investigated the kinase activity of the cytoplasmic domain of histidine kinase GraS and the interaction with its cognate response regulator GraR. We also investigated interactions among the auxiliary protein GraX, GraS/R and the ATPase protein of the ABC transporter, VraF. We found that GraS lacks autophosphorylation activity, unlike a similar histidine kinase, BceS, of Bacillus subtilis. In addition, the interaction between GraS and GraR is very weak in comparison to the stronger interaction observed between BceS and its conjugated response regulator, BceR, suggesting that CAMP signaling may not flow directly from GraS to GraR. We found that the auxiliary protein GraX interacts with VraF and GraR, and requires the histidine phosphotransfer and dimerization domain of GraS to interact with this protein. Further, VraF requires the GraS region that connects the membrane-bound domain with the cytoplasmic domain of this protein for interaction with GraS. The interactions of GraX with GraS/R and VraF indicate that GraX may serve as a scaffold to bring these proteins in close proximity to GraS, plausibly to facilitate activation of GraS to ultimately transduce the signal to GraR.
机译:对金黄色葡萄球菌中阳离子抗菌肽(CAMP)的响应依赖于两组分系统(TCS)GraSR,辅助蛋白GraX和ATP结合盒(ABC)转运蛋白VraF / G。为了了解GraSR的信号转导机制,我们研究了组氨酸激酶GraS胞质结构域的激酶活性及其与其关联反应调节剂GraR的相互作用。我们还研究了辅助蛋白GraX,GraS / R和ABC转运蛋白VraF的ATPase蛋白之间的相互作用。我们发现,与枯草芽孢杆菌的类似组氨酸激酶BceS不同,GraS缺乏自身磷酸化活性。此外,与BceS及其共轭反应调节因子BceR之间观察到的较强相互作用相比,GraS与GraR之间的相互作用非常弱,这表明CAMP信号可能不会直接从GraS流向GraR。我们发现辅助蛋白GraX与VraF和GraR相互作用,并需要GraS的组氨酸磷酸转移和二聚结构域与该蛋白相互作用。此外,VraF需要连接膜结合结构域和该蛋白的胞质结构域的GraS区域才能与GraS相互作用。 GraX与GraS / R和VraF的相互作用表明,GraX可以充当支架,使这些蛋白与GraS紧密接近,从而有可能促进GraS的激活,最终将信号转导至GraR。

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