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A comprehensive mutational analysis of the Arabidopsis resistance protein RPW8.2 reveals key amino acids for defense activation and protein targeting.

机译:拟南芥抗性蛋白RPW8.2的全面突变分析揭示了防御激活和蛋白靶向的关键氨基酸。

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The Arabidopsis thaliana RESISTANCE TO POWDERY MILDEW8.2 (RPW8.2) protein is specifically targeted to the extrahaustorial membrane (EHM) encasing the haustorium, or fungal feeding structure, where RPW8.2 activates broad-spectrum resistance against powdery mildew pathogens. How RPW8.2 activates defenses at a precise subcellular locale is not known. Here, we report a comprehensive mutational analysis in which more than 100 RPW8.2 mutants were functionally evaluated for their defense and trafficking properties. We show that three amino acid residues (i.e., threonine-64, valine-68, and aspartic acid-116) are critical for RPW8.2-mediated cell death and resistance to powdery mildew (Golovinomyces cichoracearum UCSC1). Also, we reveal that two arginine (R)- or lysine (K)-enriched short motifs (i.e., R/K-R/K-x-R/K) make up the likely core EHM-targeting signals, which, together with the N-terminal transmembrane domain, define a minimal sequence of 60 amino acids that is necessary and sufficient for EHM localization. In addition, some RPW8.2 mutants localize to the nucleus and/or to a potentially novel membrane that wraps around plastids or plastid-derived stromules. Results from this study not only reveal critical amino acid elements in RPW8.2 that enable haustorium-targeted trafficking and defense, but also provide evidence for the existence of a specific, EHM-oriented membrane trafficking pathway in leaf epidermal cells invaded by powdery mildew.
机译:拟南芥对小麦粉病的抗性(RPW8.2)蛋白特别针对包裹在化脓室或真菌喂养结构中的膜外膜(EHM),其中RPW8.2激活了对白粉病病原体的广谱抗性。尚不清楚RPW8.2如何在精确的亚细胞区域激活防御系统。在这里,我们报告了一项全面的突变分析,其中对100多个RPW8.2突变体的防御和运输特性进行了功能评估。我们显示了三个氨基酸残基(即苏氨酸64,缬氨酸68和天冬氨酸116)对于RPW8.2介导的细胞死亡和抗白粉病(Golovinomyces cichoracearum UCSC1)至关重要。此外,我们发现两个富含精氨酸(R)或赖氨酸(K)的短基序(即R / KR / KxR / K)构成了可能的靶向EHM的核心信号,这些信号与N端跨膜一起域中,定义EHM定位所必需和足够的60个氨基酸的最小序列。另外,一些RPW8.2突变体定位在核和/或包裹在质体或质体衍生的基质周围的潜在的新型膜上。这项研究的结果不仅揭示了RPW8.2中的关键氨基酸元素,这些氨基酸能够实现针对摆锤的运输和防御,而且还为白粉病侵袭的叶表皮细胞中存在特定的,以EHM导向的膜运输途径提供了证据。

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