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首页> 外文期刊>The New Phytologist >Different roles of Enhanced Disease Susceptibility1 (EDS1) bound to and dissociated from Phytoalexin Deficient4 (PAD4) in Arabidopsis immunity
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Different roles of Enhanced Disease Susceptibility1 (EDS1) bound to and dissociated from Phytoalexin Deficient4 (PAD4) in Arabidopsis immunity

机译:拟南芥免疫中与植物抗毒素缺乏素4(PAD4)结合和解离的疾病易感性增强(EDS1)的不同作用

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摘要

Enhanced Disease Susceptibility1 (EDS1) is an important regulator of plant basal and receptor-triggered immunity. Arabidopsis EDS1 interacts with two related proteins, Phytoalexin Deficient4 (PAD4) and Senescence Associated Gene101 (SAG101), whose combined activities are essential for defense signaling. The different sizes and intracellular distributions of EDS1-PAD4 and EDS1-SAG101 complexes in Arabidopsis leaf tissues suggest that they perform nonredundant functions.The nature and biological relevance of EDS1 interactions with PAD4 and SAG101 were explored using yeast three-hybrid assays, in vitro analysis of recombinant proteins purified from Escherichia coli, and characterization of Arabidopsis transgenic plants expressing an eds1 mutant (eds1(L262P)) protein which no longer binds PAD4 but retains interaction with SAG101.EDS1 forms molecularly distinct complexes with PAD4 or SAG101 without additional plant factors. Loss of interaction with EDS1 reduces PAD4 post-transcriptional accumulation, consistent with the EDS1 physical association stabilizing PAD4. The dissociated forms of EDS1 and PAD4 are fully competent in signaling receptor-triggered localized cell death at infection foci. By contrast, an EDS1-PAD4 complex is necessary for basal resistance involving transcriptional up-regulation of PAD4 itself and mobilization of salicylic acid defenses.Different EDS1 and PAD4 molecular configurations have distinct and separable functions in the plant innate immune response.
机译:增强的疾病易感性1(EDS1)是植物基础和受体触发的免疫力的重要调节剂。拟南芥EDS1与两个相关蛋白,植物抗毒素新蛋白4(PAD4)和衰老相关基因101(SAG101)相互作用,它们的结合活性对于防御信号转导至关重要。 EDS1-PAD4和EDS1-SAG101复合物在拟南芥叶片组织中的大小和胞内分布不同,表明它们具有非冗余功能。使用酵母三杂交试验,体外分析探索了EDS1与PAD4和SAG101相互作用的性质和生物学相关性。大肠杆菌纯化的重组蛋白的鉴定,以及表达不再与PAD4结合但保留与SAG101相互作用的eds1突变体(eds1(L262P))蛋白的拟南芥转基因植物的表征。与EDS1的相互作用丧失会减少PAD4的转录后积累,这与稳定PAD4的EDS1物理缔合相一致。 EDS1和PAD4的解离形式完全有能力在感染灶处发信号通知受体触发的局部细胞死亡。相比之下,EDS1-PAD4复合物是基础抗性所必需的,涉及PAD4自身的转录上调和水杨酸防御的动员。不同的EDS1和PAD4分子构型在植物固有免疫应答中具有不同的功能。

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