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Leucine zipper motif in RRS1 is crucial for the regulation of Arabidopsis dual resistance protein complex RPS4/RRS1

机译:RRS1中的亮氨酸拉链图案对于调节拟南芥双抗性蛋白复合RPS4 / RRS1至关重要

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Arabidopsis thaliana leucine-rich repeat-containing (NLR) proteins RPS4 and RRS1, known as dual resistance proteins, confer resistance to multiple pathogen isolates, such as the bacterial pathogens Pseudomonas syringae and Ralstonia solanacearum and the fungal pathogen Colletotrichum higginsianum . RPS4 is a typical Toll/interleukin 1 Receptor (TIR)-type NLR, whereas RRS1 is an atypical TIR-NLR that contains a leucine zipper (LZ) motif and a C-terminal WRKY domain. RPS4 and RRS1 are localised near each other in a head-to-head orientation. In this study, direct mutagenesis of the C-terminal LZ motif in RRS1 caused an autoimmune response and stunting in the mutant. Co-immunoprecipitation analysis indicated that full-length RPS4 and RRS1 are physically associated with one another. Furthermore, virus-induced gene silencing experiments showed that hypersensitive-like cell death triggered by RPS4/LZ motif-mutated RRS1 depends on EDS1. In conclusion, we suggest that the RRS1-LZ motif is crucial for the regulation of the RPS4/RRS1 complex.
机译:拟南芥含纯化的含少量的含有(NLR)蛋白RPS4和RRS1,称为双抗性蛋白质,赋予多种病原体分离物的耐药性,例如细菌病原体假单胞菌锰酸和Ralstonia solanacearum和真菌病原体Colletottrichum Higginsianum。 RPS4是典型的Toll /白细胞介素1受体(TIR)-TYPE NLR,而RRS1是含​​有亮氨酸拉链(LZ)基序和C末端腕部结构域的非典型TIR-NLR。 RPS4和RRS1在头部到头方向上彼此附近。在该研究中,RRS1中C末端LZ基序的直接诱变引起了自身免疫应答和突变体中的静置。共免疫沉淀分析表明全长RPS4和RRS1彼此物理相关。此外,病毒诱导的基因沉默实验表明,RPS4 / LZ主题突变的RRS1触发的过敏的细胞死亡取决于EDS1。总之,我们建议RRS1-LZ主题对于RPS4 / RRS1复合物的调节至关重要。

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