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CrdS and CrdA Comprise a Two-Component System That Is Cooperatively Regulated by the Che3 Chemosensory System in Myxococcus xanthus

机译:CrdS和CrdA包括由粘液球菌的Che3化学感觉系统协同调节的两组分系统。

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摘要

Myxococcus xanthus serves as a model organism for development and complex signal transduction. Regulation of developmental aggregation and sporulation is controlled, in part, by the Che3 chemosensory system. The Che3 pathway consists of homologs to two methyl-accepting chemotaxis proteins (MCPs), CheA, CheW, CheB, and CheR but not CheY. Instead, the output for Che3 is the NtrC homolog CrdA, which functions to regulate developmental gene expression. In this paper we have identified an additional kinase, CrdS, which directly regulates the phosphorylation state of CrdA. Both epistasis and in vitro phosphotransfer assays indicate that CrdS functions as part of the Che3 pathway and, in addition to CheA3, serves to regulate CrdA phosphorylation in M. xanthus. We provide kinetic data for CrdS autophosphorylation and demonstrate specificity for phosphotransfer from CrdS to CrdA. We further demonstrate that CheA3 destabilizes phosphorylated CrdA (CrdA~P), indicating that CheA3 likely acts as a phosphatase. Both CrdS and CheA3 control developmental progression by regulating the phosphorylation state of CrdA~P in the cell. These results support a model in which a classical two-component system and a chemosensory system act synergistically to control the activity of the response regulator CrdA.
机译:黄腐粘球菌是用于发育和复杂信号转导的模型生物。发育聚集和孢子形成的调节部分受Che3化学感应系统控制。 Che3途径由与两个甲基接受趋化性蛋白(MCP),CheA,CheW,CheB和CheR的同源物组成,但不包括CheY。相反,Che3的输出是NtrC同源CrdA,其功能是调节发育基因的表达。在本文中,我们确定了另一种激酶CrdS,它直接调节CrdA的磷酸化状态。上位转移和体外磷酸转移测定均表明CrdS作为Che3途径的一部分起作用,除CheA3外,还用于调节黄花木霉中CrdA的磷酸化。我们提供了CrdS自磷酸化的动力学数据,并证明了从CrdS到CrdA的磷酸转移的特异性。我们进一步证明,CheA3使磷酸化的CrdA(CrdA〜P)不稳定,表明CheA3可能起磷酸酶的作用。 CrdS和CheA3都通过调节细胞中CrdA〜P的磷酸化状态来控制发育进程。这些结果支持一个模型,在该模型中,经典的两组分系统和化学感应系统协同作用,以控制响应调节器CrdA的活性。

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  • 年度 2011
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