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Genetic analysis structural modeling and direct coupling analysis suggest a mechanism for phosphate signaling in Escherichia coli

机译:遗传分析结构建模和直接耦合分析表明大肠杆菌中磷酸盐信号转导的机制。

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摘要

BackgroundProper phosphate signaling is essential for robust growth of Escherichia coli and many other bacteria. The phosphate signal is mediated by a classic two component signal system composed of PhoR and PhoB. The PhoR histidine kinase is responsible for phosphorylating/dephosphorylating the response regulator, PhoB, which controls the expression of genes that aid growth in low phosphate conditions. The mechanism by which PhoR receives a signal of environmental phosphate levels has remained elusive. A transporter complex composed of the PstS, PstC, PstA, and PstB proteins as well as a negative regulator, PhoU, have been implicated in signaling environmental phosphate to PhoR.
机译:背景正确的磷酸盐信号传导对于大肠杆菌和许多其他细菌的强劲生长至关重要。磷酸盐信号是由PhoR和PhoB组成的经典两组分信号系统介导的。 PhoR组氨酸激酶负责磷酸化/去磷酸化反应调节因子PhoB,后者控制在低磷酸盐条件下有助于生长的基因的表达。 PhoR接收环境磷酸盐水平信号的机制仍然难以捉摸。由PstS,PstC,PstA和PstB蛋白以及负调节剂PhoU组成的转运蛋白复合物与环境磷酸盐向PhoR的信号传递有关。

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