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植物病原菌果胶杆菌的多重复合黏附素通过 I 型分泌途径分泌,并受到涉及非典型双鸟苷酸环化酶的复杂调控。

A multi-repeat adhesin of the phytopathogen, Pectobacterium atrosepticum, is secreted by a Type I pathway and is subject to complex regulation involving a non-canonical diguanylate cyclase.

机构信息

Department of Biochemistry, University of Cambridge, Cambridge CB2 1QW, UK.

出版信息

Mol Microbiol. 2011 Nov;82(3):719-33. doi: 10.1111/j.1365-2958.2011.07849.x. Epub 2011 Oct 12.

Abstract

Cyclic diguanylate (c-di-GMP) is a second messenger controlling many important bacterial processes. The phytopathogen Pectobacterium atrosepticum SCRI1043 (Pba1043) possesses a Type I secretion system (T1SS) essential for the secretion of a proteinaceous multi-repeat adhesin (MRP) required for binding to the host plant. The genes encoding the MRP and the T1SS are tightly linked to genes encoding several putative c-di-GMP regulatory components. We show that c-di-GMP regulates secreted MRP levels in Pba1043 through the action of two genes encoding predicted diguanylate cyclase (DGC) and phosphodiesterase proteins (ECA3270 and ECA3271). Phenotypic analyses and quantification of c-di-GMP levels demonstrated that ECA3270 and ECA3271 regulate secreted MRP levels by increasing and decreasing, respectively, the intracellular levels of c-di-GMP. Moreover, ECA3270 represents the first active DGC reported to have an alternative active-site motif from the 'canonical' GG[D/E]EF. ECA3270 has an A-site motif of SGDEF and analysis of single amino acid replacements demonstrated that the first position of this motif can tolerate functional substitution. Serine in position one of the A-site is also observed in many other DGCs. Finally, another T1SS-linked regulator (ECA3265) also plays an important role in regulating secreted MRP, with an altered localization of MRP observed in an ECA3265 mutant background. Mutants defective in these three T1SS-linked regulators exhibit a reduction in root binding and virulence, confirming that this complex, finely tuned regulation system is crucial in the interaction with host plants.

摘要

环二鸟苷酸(c-di-GMP)是控制许多重要细菌过程的第二信使。植物病原菌果胶杆菌 SCRI1043(Pba1043)拥有一种必需的 I 型分泌系统(T1SS),用于分泌一种蛋白质多重复合黏附素(MRP),该黏附素对于与宿主植物的结合是必需的。编码 MRP 和 T1SS 的基因与编码几个假定 c-di-GMP 调节成分的基因紧密相连。我们表明,c-di-GMP 通过编码两个预测的二鸟苷酸环化酶(DGC)和磷酸二酯酶蛋白(ECA3270 和 ECA3271)的基因调节 Pba1043 中分泌的 MRP 水平。表型分析和 c-di-GMP 水平的定量表明,ECA3270 和 ECA3271 通过分别增加和减少细胞内 c-di-GMP 水平来调节分泌的 MRP 水平。此外,ECA3270 代表了第一个具有来自“典型” GG[D/E]EF 的替代活性位点基序的活性 DGC。ECA3270 具有 SGDEF 的 A 位点基序,并且对单个氨基酸替换的分析表明,该基序的第一个位置可以耐受功能替换。A 位点的第一位上的丝氨酸也存在于许多其他 DGC 中。最后,另一个与 T1SS 相关的调节剂(ECA3265)也在调节分泌的 MRP 中起重要作用,在 ECA3265 突变体背景中观察到 MRP 的定位改变。这三个与 T1SS 相关的调节剂缺陷突变体在根结合和毒力方面表现出降低,证实了这个复杂的、精细调节的调控系统在与宿主植物的相互作用中是至关重要的。

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