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Interaction between domains of a plant NBS–LRR protein in disease resistance-related cell death

机译:植物NBS-LRR蛋白域之间的相互作用与抗病性相关的细胞死亡

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摘要

Many plant disease resistance (R) genes encode proteins predicted to have an N-terminal coiled-coil (CC) domain, a central nucleotide-binding site (NBS) domain and a C-terminal leucine-rich repeat (LRR) domain. These CC–NBS–LRR proteins recognize specific pathogen-derived products and initiate a resistance response that often includes a type of cell death known as the hypersensitive response (HR). Co-expression of the potato CC–NBS–LRR protein Rx and its elicitor, the PVX coat protein (CP), results in a rapid HR. Surprisingly, co-expression of the LRR and CC–NBS as separate domains also resulted in a CP-dependent HR. Likewise, the CC domain complemented a version of Rx lacking this domain (NBS– LRR). Correspondingly, the LRR domain interacted physically in planta with the CC–NBS, as did CC with NBS–LRR. Both interactions were disrupted in the presence of CP. However, the interaction between CC and NBS–LRR was dependent on a wild-type P-loop motif, whereas the interaction between CC–NBS and LRR was not. We propose that activation of Rx entails sequential disruption of at least two intramolecular interactions.
机译:许多植物抗病性(R)基因编码的蛋白质预计具有N末端卷曲螺旋(CC)结构域,中央核苷酸结合位点(NBS)结构域和C末端富含亮氨酸的重复序列(LRR)结构域。这些CC–NBS–LRR蛋白识别特定的病原体衍生产物,并启动抗性反应,这种反应通常包括一种称为超敏反应(HR)的细胞死亡。马铃薯CC–NBS–LRR蛋白Rx及其引发剂PVX外壳蛋白(CP)的共表达可导致快速的HR。出乎意料的是,LRR和CC–NBS作为单独的域共同表达也导致了CP依赖的HR。同样,CC域补充了缺少该域的Rx版本(NBS– LRR)。相应地,LCC域在植物中与CC-NBS发生了物理相互作用,CC与NBS-LRR也发生了相互作用。在CP存在下,两种相互作用均被破坏。但是,CC和NBS-LRR之间的相互作用取决于野生型P环基序,而CC-NBS和LRR之间的相互作用则不受。我们建议激活Rx引起至少两个分子内相互作用的顺序破坏。

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