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Investigating the functions of the RIN4 protein complex during plant innate immune responses. [Review] [34 refs]

机译:在植物先天免疫反应过程中研究RIN4蛋白复合物的功能。 [评论] [34个裁判]

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摘要

Pathogen recognition by the plant innate immune system invokes a sophisticated signal transduction network that culminates in disease resistance. The Arabidopsis protein RIN4 is a well-known regulator of plant immunity. However, the molecular mechanisms by which RIN4 controls multiple immune responses have remained elusive. in our recently published study, we purified components of the RIN4 protein complex from A. thaliana and identified several novel RIN4-associated proteins.1 we found that one class of RIN4-associated proteins, the plasma membrane H(+)-ATPases AHA1 and AHA2, play a crucial role in resisting pathogen invasion. Plants use RIN4 to regulate H(+)-ATPase activity during immune responses, thereby controlling stomatal apertures during pathogen attack. Stomata were previously identified as active regulators of plant immune responses during pathogen invasion, but how the plant innate immune system coordinates this response was unknown.2,3 Our investigations have revealed a novel function of rin4 during pathogenesis. Here, we discuss the rin4-AHA1/2 interaction and highlight additional RIN4-associated proteins (RAPs) as well as speculate on their potential roles in plant innate immunity.
机译:植物先天免疫系统对病原体的识别会激活一个复杂的信号转导网络,最终导致抗病性的提高。拟南芥蛋白RIN4是众所周知的植物免疫调节剂。但是,RIN4控制多种免疫反应的分子机制仍然不清楚。在我们最近发表的研究中,我们从拟南芥中纯化了RIN4蛋白复合物的成分,并鉴定了几种新颖的RIN4相关蛋白。1我们发现一类RIN4相关蛋白,即质膜H(+)-ATPases AHA1和AHA2在抵抗病原体入侵方面起着至关重要的作用。植物在免疫反应期间使用RIN4调节H(+)-ATPase活性,从而在病原体侵袭期间控制气孔孔径。气孔以前被确定为病原体入侵过程中植物免疫反应的活跃调节者,但尚不知道植物先天免疫系统如何协调这种反应。2,3我们的研究揭示了rin4在发病机理中的新功能。在这里,我们讨论rin4-AHA1 / 2相互作用,并强调其他RIN4相关蛋白(RAP),并推测它们在植物先天免疫中的潜在作用。

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