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HD-GYP结构域、环二鸟苷酸信号传导与细菌对植物的致病性

The HD-GYP domain, cyclic di-GMP signaling, and bacterial virulence to plants.

作者信息

Dow J Maxwell, Fouhy Yvonne, Lucey Jean F, Ryan Robert P

机构信息

BIOMERIT Research Centre, Department of Microbiology, BioSciences Institute, National University of Ireland, Cork, Ireland.

出版信息

Mol Plant Microbe Interact. 2006 Dec;19(12):1378-84. doi: 10.1094/MPMI-19-1378.

Abstract

Cyclic di-GMP is an almost ubiquitous second messenger in bacteria that was first described as an allosteric activator of cellulose synthase but is now known to regulate a range of functions, including virulence in human and animal pathogens. Two protein domains, GGDEF and EAL, are implicated in the synthesis and degradation, respectively, of cyclic di-GMP. These domains are widely distributed in bacteria, including plant pathogens. The majority of proteins with GGDEF and EAL domains contain additional signal input domains, suggesting that their activities are responsive to environmental cues. Recent studies have demonstrated that a third domain, HD-GYP, is also active in cyclic di-GMP degradation. In the plant pathogen Xanthomonas campestris pv. campestris, a two-component signal transduction system comprising the HD-GYP domain regulatory protein RpfG and cognate sensor RpfC positively controls virulence. The signals recognized by RpfC may include the cell-cell signal DSF, which also acts to regulate virulence in X. campestris pv. campestris. Here, we review these recent advances in our understanding of cyclic di-GMP signaling with particular reference to one or more roles in the bacterial pathogenesis of plants.

摘要

环二鸟苷酸是细菌中一种几乎普遍存在的第二信使,最初被描述为纤维素合酶的变构激活剂,但现在已知它能调节一系列功能,包括人类和动物病原体的毒力。两个蛋白质结构域,GGDEF和EAL,分别参与环二鸟苷酸的合成和降解。这些结构域广泛分布于细菌中,包括植物病原体。大多数含有GGDEF和EAL结构域的蛋白质还包含额外的信号输入结构域,这表明它们的活性对环境线索有反应。最近的研究表明,第三个结构域HD-GYP也参与环二鸟苷酸的降解。在植物病原体野油菜黄单胞菌野油菜致病变种中,由HD-GYP结构域调节蛋白RpfG和同源传感器RpfC组成的双组分信号转导系统正向控制毒力。RpfC识别的信号可能包括细胞间信号DSF,它也在野油菜黄单胞菌野油菜致病变种中调节毒力。在此,我们综述了在理解环二鸟苷酸信号传导方面的这些最新进展,特别提及了其在植物细菌致病过程中的一个或多个作用。

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