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首页> 外文期刊>Current opinion in microbiology >Targeting of plant pattern recognition receptor-triggered immunity by bacterial type-III secretion system effectors
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Targeting of plant pattern recognition receptor-triggered immunity by bacterial type-III secretion system effectors

机译:通过细菌III型分泌系统效应子靶向植物模式识别受体触发的免疫

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摘要

During infection, microbes are detected by surface-localized pattern recognition receptors (PRRs), leading to an innate immune response that prevents microbial ingress. Therefore, successful pathogens must evade or inhibit PRR-triggered immunity to cause disease. In the past decade, a number of type-III secretion system effector (T3Es) proteins from plant pathogenic bacteria have been shown to suppress this layer of innate immunity. More recently, the detailed mechanisms of action have been defined for several of these effectors. Interestingly, effectors display a wide array of virulence targets, being able to prevent activation of immune receptors and to hijack immune signaling pathways. Besides being a fascinating example of pathogen-host co-evolution, effectors have also emerged as valuable tools to dissect important biological processes in host cells.
机译:在感染过程中,微生物会被表面定位的模式识别受体(PRR)检测到,从而导致先天免疫反应,从而阻止了微生物的入侵。因此,成功的病原体必须规避或抑制PRR触发的免疫力才能引起疾病。在过去的十年中,来自植物病原细菌的许多III型分泌系统效应蛋白(T3Es)已显示出抑制这一层固有免疫力的作用。最近,已经为这些效应子中的几种定义了详细的作用机制。有趣的是,效应子表现出各种各样的毒力靶标,能够阻止免疫受体的活化并劫持免疫信号通路。除了是病原体-宿主共同进化的一个引人入胜的例子外,效应子也已经成为解剖宿主细胞中重要生物学过程的有价值的工具。

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