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Intermolecular interactions between HD-GYP and GGDEF domain proteins mediate virulence-related signal transduction in Xanthomonas campestris

机译:HD-GYP和GGDEF域蛋白之间的分子间相互作用介导了油菜黄单胞菌的毒力相关信号转导。

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摘要

In the plant pathogen Xanthomonas campestris pv. campestris (Xcc)?a two component system comprising RpfG and the complex sensor kinase RpfC?is implicated in sensing and responding to the cell-cell signaling molecule DSF to positively regulate the synthesis of virulence factors such as extracellular enzymes, biofilm structure and motility. RpfG is a two-component regulator with a CheY-like receiver domain attached to an HD-GYP cyclic di-GMP phosphodiesterase domain. In a recent paper we showed that that the physical interaction of RpfG with two proteins with a diguanylate cyclase (GGDEF) domain, acts to control a sub-set of RpfG-regulated virulence functions. These protein-protein interactions required the conserved GYP motif in the HD-GYP domain of RpfG and were dependent on DSF signaling. Here we discuss these findings, considering in particular different scenarios for the role of RpfG in multiple signaling pathways involving cyclic di-GMP that impinge on virulence.
机译:在植物病原体黄单胞菌中。 Campestris(Xcc)是一种由RpfG和复杂的传感器激酶RpfC2组成的两组分系统,涉及传感和响应细胞信号分子DSF,以积极调节诸如细胞外酶,生物膜结构和运动性等毒力因子的合成。 RpfG是一种两组分调节剂,其CheY样受体结构域与HD-GYP环状二GMP磷酸二酯酶结构域相连。在最近的一篇论文中,我们表明RpfG与两个具有双鸟苷酸环化酶(GGDEF)域的蛋白质的物理相互作用,起着控制RpfG调节的毒力功能亚集的作用。这些蛋白质间相互作用需要RpfG的HD-GYP域中的保守GYP基序,并且依赖于DSF信号传导。在这里,我们讨论这些发现,特别是考虑RpfG在涉及环二GMP的多种信号通路中影响毒力的多种信号通路中的作用。

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