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植物-病原体分子军备竞赛中的狡猾策略。

Greasy tactics in the plant-pathogen molecular arms race.

机构信息

Boyce Thompson Institute for Plant Research, Ithaca, NY 14853, USA

Boyce Thompson Institute for Plant Research, Ithaca, NY 14853, USA Section of Plant Pathology and Plant-Microbe Biology, School of Integrative Plant Science, Cornell University, Ithaca, NY 14853, USA.

出版信息

J Exp Bot. 2015 Mar;66(6):1607-16. doi: 10.1093/jxb/erv059. Epub 2015 Feb 27.

Abstract

The modification of proteins by the attachment of fatty acids is a targeting tactic involved in mechanisms of both plant immunity and bacterial pathogenesis. The plant plasma membrane (PM) is a key battleground in the war against disease-causing microbes. This membrane is armed with an array of sensor proteins that function as a surveillance system to detect invading pathogens. Several of these sensor proteins are directed to the plasma membrane through the covalent addition of fatty acids, a process termed fatty acylation. Phytopathogens secrete effector proteins into the plant cell to subvert these surveillance mechanisms, rendering the host susceptible to infection. The targeting of effectors to specific locales within plant cells, particularly the internal face of the host PM, is critical for their virulence function. Several bacterial effectors hijack the host fatty acylation machinery to be modified and directed to this contested locale. To find and fight these fatty acylated effectors the plant leverages lipid-modified intracellular sensors. This review provides examples featuring how fatty acylation is a battle tactic used by both combatants in the molecular arms race between plants and pathogens. Also highlighted is the exploitation of a specific form of host-mediated fatty acid modification, which appears to be exclusively employed by phytopathogenic effector proteins.

摘要

蛋白质通过脂肪酸的附着进行修饰是植物免疫和细菌发病机制中涉及的靶向策略。植物质膜(PM)是对抗致病微生物的关键战场。该膜配备了一系列传感器蛋白,作为检测入侵病原体的监视系统。这些传感器蛋白中的几种通过脂肪酸的共价添加被定向到质膜,这一过程称为脂肪酸酰化。植物病原体将效应蛋白分泌到植物细胞中,颠覆这些监视机制,使宿主易受感染。效应蛋白靶向植物细胞内的特定位置,特别是宿主质膜的内表面,对于它们的毒力功能至关重要。一些细菌效应蛋白劫持宿主脂肪酸酰化机制进行修饰,并被定向到这个有争议的位置。为了发现和对抗这些脂肪酸酰化的效应蛋白,植物利用脂修饰的细胞内传感器。本综述提供了一些例子,说明脂肪酸酰化是植物和病原体之间分子军备竞赛中双方使用的一种战斗策略。还强调了一种特定形式的宿主介导的脂肪酸修饰的利用,这种修饰似乎仅被植物病原体效应蛋白所利用。

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