首页> 美国卫生研究院文献>Journal of Bacteriology >Cross talk to the phosphate regulon of Escherichia coli by PhoM protein: PhoM is a histidine protein kinase and catalyzes phosphorylation of PhoB and PhoM-open reading frame 2.
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Cross talk to the phosphate regulon of Escherichia coli by PhoM protein: PhoM is a histidine protein kinase and catalyzes phosphorylation of PhoB and PhoM-open reading frame 2.

机译:通过PhoM蛋白与大肠杆菌的磷酸调节子进行串扰:PhoM是一种组氨酸蛋白激酶可催化PhoB和PhoM开放阅读框2的磷酸化。

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摘要

Transcription of the genes in the phosphate regulon in Escherichia coli is activated by PhoB protein, which is phosphorylated by PhoR protein under phosphate-limiting conditions. In the absence of the phoR function, the genes in the phosphate regulon are expressed constitutively and the expression is dependent on the function of phoM and phoB. We constructed a plasmid with a lacZ'-'phoM fusion gene, which encoded a hybrid protein (PhoM1206) in which the hydrophobic amino-terminal half of the native PhoM was replaced by beta-galactosidase. The phoM1206 gene could complement the phoM mutation in vivo. We purified PhoM1206 from the overproducing strain carrying the plasmid; it was autophosphorylated at a histidine residue in the presence of ATP, and the phospho-PhoM1206 phosphorylated PhoB. PhoM1206 could also transphosphorylate the product of phoM-orf2, which is structurally homologous to phoB and located immediately upstream of phoM. Although PhoR1084 that lacked the hydrophobic amino-terminal region of the native PhoR protein transphosphorylated PhoB, it could not phosphorylate PhoM-open reading frame 2. Therefore, cross talk by protein phosphorylation appears to occur from PhoM to PhoB but not from PhoR to PhoM-open reading frame 2.
机译:大肠杆菌中磷酸盐调节子中的基因转录被PhoB蛋白激活,而PhoB蛋白在磷酸盐限制条件下被PhoR蛋白磷酸化。在没有phoR功能的情况下,磷酸化调节子中的基因组成性表达,并且表达取决于phoM和phoB的功能。我们构建了一个带有lacZ'-'phoM融合基因的质粒,该质粒编码一个杂合蛋白(PhoM1206),其中天然PhoM的疏水氨基末端一半被β-半乳糖苷酶取代。 phoM1206基因可以在体内补充phoM突变。我们从携带该质粒的过量生产菌株中纯化了PhoM1206。它在ATP存在下在组氨酸残基处被自身磷酸化,而磷酸化-PhoM1206磷酸化了PhoB。 PhoM1206还可以使phoM-orf2的产物转磷酸化,该产物在结构上与phoB同源并且位于phoM的紧邻上游。尽管缺少天然PhoR蛋白经磷酸化的PhoB的疏水性氨基末端区域的PhoR1084,却无法磷酸化PhoM开放阅读框2。因此,似乎是从PhoM到PhoB发生了蛋白磷酸化的串扰,而从PhoR到PhoM-打开阅读框2。

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