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二价金属离子与CheY蛋白的结合及其在细菌趋化性磷酸转移中的意义。

Divalent metal ion binding to the CheY protein and its significance to phosphotransfer in bacterial chemotaxis.

作者信息

Lukat G S, Stock A M, Stock J B

机构信息

Department of Biology and Chemistry, Princeton University, New Jersey 08544.

出版信息

Biochemistry. 1990 Jun 12;29(23):5436-42. doi: 10.1021/bi00475a004.

Abstract

Signal transduction in bacterial chemotaxis involves transfer of a phosphoryl group between the cytoplasmic proteins CheA and CheY. In addition to the established metal ion requirement for autophosphorylation of CheA, divalent magnesium ions are necessary for the transfer of phosphate from CheA to CheY. The work described here demonstrates via fluorescence studies that CheY contains a magnesium ion binding site. This site is a strong candidate for the metal ion site required to facilitate phosphotransfer from phospho-CheA to CheY. The diminished magnesium ion interaction with CheY mutant D13N and the lack of metal ion binding to D57N along with significant reduction in phosphotransfer to these two mutants are in direct contrast to the behavior of wild-type CheY. This supports the hypothesis that the acidic pocket formed by Asp13 and Asp57 is essential to metal binding and phosphotransfer activity. Metal ion is also required for the dephosphorylation reaction, raising the possibility that the phosphotransfer and hydrolysis reactions occur by a common metal-phosphoprotein transition-state intermediate. The highly conserved nature of the proposed metal ion binding site and site of phosphorylation within the large family of phosphorylated regulatory proteins that are homologous to CheY supports the hypothesis that all these proteins function by a similar catalytic mechanism.

摘要

细菌趋化作用中的信号转导涉及细胞质蛋白CheA和CheY之间磷酸基团的转移。除了已确定的CheA自磷酸化所需的金属离子外,二价镁离子对于磷酸从CheA转移到CheY也是必需的。此处描述的工作通过荧光研究表明,CheY含有一个镁离子结合位点。该位点极有可能是促进磷酸从磷酸化CheA转移到CheY所需的金属离子位点。镁离子与CheY突变体D13N的相互作用减弱,以及D57N缺乏金属离子结合,同时向这两个突变体的磷酸转移显著减少,这与野生型CheY的行为形成直接对比。这支持了由Asp13和Asp57形成的酸性口袋对于金属结合和磷酸转移活性至关重要的假设。去磷酸化反应也需要金属离子,这增加了磷酸转移和水解反应通过共同的金属 - 磷蛋白过渡态中间体发生的可能性。与CheY同源的大量磷酸化调节蛋白家族中,所提出的金属离子结合位点和磷酸化位点具有高度保守性,这支持了所有这些蛋白通过类似催化机制发挥作用的假设。

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