Potocka Isabel, Thein Melanie, ØSterås Magne, Jenal Urs, Alley M R K
Department of Biological Sciences, South Kensington Campus, Imperial College of Science, Technology and Medicine, London SW7 2AY, United Kingdom.
J Bacteriol. 2002 Dec;184(23):6635-41. doi: 10.1128/JB.184.23.6635-6642.2002.
In order to determine whether ClpXP-mediated proteolysis is a common mechanism used to regulate the chemotaxis machinery during the cell cycle of Caulobacter crescentus, we have characterized a soluble cytoplasmic chemoreceptor, McpB. The mcpB gene lies adjacent to the major chemotaxis operon, which encodes 12 chemotaxis proteins, including the membrane chemoreceptor McpA. Like McpA, McpB possesses a C-terminal CheBR docking motif and three potential methylation sites, which we suggest are methylated. The McpB protein is degraded via a ClpX-dependent pathway during the swarmer-to-stalked cell transition, and a motif, which is 3 amino acids N-terminal to the McpB CheBR docking site, is required for proteolysis. Analysis of the degradation signal in McpB and McpA reveals a common motif present in the other four chemoreceptors that possess CheBR docking sites. A green fluorescent protein (GFP) fusion bearing 58 amino acids from the C terminus of McpA, which contains this motif, is degraded, suggesting that the C-terminal sequence is sufficient to confer ClpXP protease susceptibility.
为了确定ClpXP介导的蛋白水解作用是否是新月柄杆菌细胞周期中用于调控趋化机制的常见机制,我们对一种可溶性细胞质化学感受器McpB进行了表征。mcpB基因位于主要趋化操纵子附近,该操纵子编码12种趋化蛋白,包括膜化学感受器McpA。与McpA一样,McpB具有一个C端CheBR对接基序和三个潜在的甲基化位点,我们认为这些位点会发生甲基化。在从游动细胞到柄细胞的转变过程中,McpB蛋白通过依赖ClpX的途径被降解,并且在McpB的CheBR对接位点N端3个氨基酸处的一个基序是蛋白水解所必需的。对McpB和McpA中降解信号的分析揭示了在其他四个具有CheBR对接位点的化学感受器中存在的一个共同基序。带有来自McpA C端58个氨基酸的绿色荧光蛋白(GFP)融合体,其中包含该基序,会被降解,这表明C端序列足以使蛋白对ClpXP蛋白酶敏感。