首页> 外文期刊>The Plant Cell >Proteolysis of a Negative Regulator of Innate Immunity Is Dependent on Resistance Genes in Tomato and Nicotiana benthamiana and Induced by Multiple Bacterial Effectors.
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Proteolysis of a Negative Regulator of Innate Immunity Is Dependent on Resistance Genes in Tomato and Nicotiana benthamiana and Induced by Multiple Bacterial Effectors.

机译:天然免疫的负调节剂的蛋白水解取决于番茄和本氏烟草中的抗性基因,并由多种细菌效应子诱导。

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摘要

RPM1-interacting protein 4 (RIN4), a negative regulator of the basal defense response in plants, is targeted by multiple bacterial virulence effectors. We show that RIN4 degradation is induced by the effector AvrPto from Pseudomonas syringae and that this degradation in Solanaceous plants is dependent on the resistance protein, Pto, a protein kinase, and Prf, a nucleotide binding site-leucine-rich repeat protein. Our data demonstrate overlap between two of the best-characterized pathways for recognition of pathogen virulence effectors in plants. RIN4 interacts with multiple plant signaling components and bacterial effectors in yeast and in planta. AvrPto induces an endogenous proteolytic activity in both tomato (Solanum lycopersicum) and Nicotiana benthamiana that degrades RIN4 and requires the consensus site cleaved by the protease effector AvrRpt2. The interaction between AvrPto and Pto, but not the kinase activity of Pto, is required for proteolysis of RIN4. Analysis of many of the effectors comprising the secretome of P. syringae pv tomato DC3000 led to the identification of two additional sequence-unrelated effectors that can also induce degradation of RIN4. Therefore, multiple bacterial effectors besides AvrRpt2 elicit proteolysis of RIN4 in planta.
机译:RPM1相互作用蛋白4(RIN4)是植物中基础防御反应的负调节剂,被多种细菌毒力效应子作为目标。我们显示RIN4降解是由来自丁香假单胞菌的效应子AvrPto诱导的,茄科植物中的这种降解取决于抗性蛋白,Pto,蛋白激酶和Prf(一种富含核苷酸结合位点的亮氨酸重复蛋白)。我们的数据表明,在识别植物中病原体毒力效应子的两个最佳表征途径之间存在重叠。 RIN4与酵母和植物中的多种植物信号成分和细菌效应子相互作用。 AvrPto在番茄(Solanum lycopersicum)和烟草Nicotiana benthamiana中均诱导内源蛋白水解活性,该蛋白降解RIN4,并需要被蛋白酶效应子AvrRpt2裂解的共有位点。 RIN4的蛋白水解需要AvrPto和Pto之间的相互作用,而不是Pto的激酶活性。对许多包含丁香假单胞菌pv番茄DC3000分泌蛋白的效应子的分析导致鉴定了另外两个与序列无关的效应子,这些效应子也可以诱导RIN4降解。因此,除了AvrRpt2之外,还有多种细菌效应子在植物中引起RIN4的蛋白水解。

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