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Phytophthora infestans effector AVR3a is essential for virulence and manipulates plant immunity by stabilizing host E3 ligase CMPG1

机译:疫霉疫霉效应物AVR3a对毒力至关重要,并通过稳定宿主E3连接酶CMPG1来操纵植物免疫力。

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摘要

Fungal and oomycete plant pathogens translocate effector proteins into host cells to establish infection. However, virulence targets and modes of action of their effectors are unknown. Effector AVR3a from potato blight pathogen Phytophthora infestans is translocated into host cells and occurs in two forms: AVR3aKI, which is detected by potato resistance protein R3a, strongly suppresses infestin 1 (INF1)-triggered cell death (ICD), whereas AVR3aEM, which evades recognition by R3a, weakly suppresses host ICD. Here we show that AVR3a interacts with and stabilizes host U-box E3 ligase CMPG1, which is required for ICD. In contrast, AVR3aKI/Y147del, a mutant with a deleted C-terminal tyrosine residue that fails to suppress ICD, cannot interact with or stabilize CMPG1. CMPG1 is stabilized by the inhibitors MG132 and epoxomicin, indicating that it is degraded by the 26S proteasome. CMPG1 is degraded during ICD. However, it is stabilized by mutations in the U-box that prevent its E3 ligase activity. In stabilizing CMPG1, AVR3a thus modifies its normal activity. Remarkably, given the potential for hundreds of effector genes in the P. infestans genome, silencing Avr3a compromises P. infestans pathogenicity, suggesting that AVR3a is essential for virulence. Interestingly, Avr3a silencing can be complemented by in planta expression of Avr3aKI or Avr3aEM but not the Avr3aKI/Y147del mutant. Our data provide genetic evidence that AVR3a is an essential virulence factor that targets and stabilizes the plant E3 ligase CMPG1, potentially to prevent host cell death during the biotrophic phase of infection.
机译:真菌和卵菌植物病原体将效应蛋白转运到宿主细胞中以建立感染。但是,毒力目标及其效应器的作用方式尚不清楚。来自马铃薯疫病病原菌疫霉菌的效应子AVR3a易位到宿主细胞中,并以两种形式发生:被马铃薯抗性蛋白R3a检测到的AVR3aKI强烈抑制了infestin 1(INF1)触发的细胞死亡(ICD),而逃避了AVR3aEM的AVR3aEM R3a识别,弱抑制宿主ICD。在这里,我们显示AVR3a与ICD所需的宿主U-box E3连接酶CMPG1相互作用并使其稳定。相反,AVR3aKI / Y147del是具有缺失的C端酪氨酸残基且无法抑制ICD的突变体,不能与CMPG1相互作用或使其稳定。 CMPG1被抑制剂MG132和环氧霉素稳定,表明它被26S蛋白酶体降解。 CMPG1在ICD期间降级。但是,它可以通过阻止其E3连接酶活性的U盒突变来稳定。在稳定CMPG1中,AVR3a因此改变了其正常活性。值得注意的是,鉴于在致病疫霉基因组中可能存在数百个效应基因,使Avr3a沉默会破坏致病疫霉的致病性,这表明AVR3a对毒力至关重要。有趣的是,Avr3a沉默可以通过在植物体内表达Avr3aKI或Avr3aEM而不是Avr3aKI / Y147del突变体来补充。我们的数据提供了遗传证据,表明AVR3a是靶向并稳定植物E3连接酶CMPG1的必需毒力因子,有可能在感染的生物营养阶段防止宿主细胞死亡。

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