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首页> 外文期刊>The Plant Cell >Physical association of the NB-LRR resistance protein Rx with a ran GTPase-activating protein is required for extreme resistance to Potato virus X
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Physical association of the NB-LRR resistance protein Rx with a ran GTPase-activating protein is required for extreme resistance to Potato virus X

机译:NB-LRR抗性蛋白Rx与跑出的GTPase激活蛋白之间存在物理联系,对马铃薯X病毒具有极强的抗性

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摘要

Nucleotide binding leucine-rich repeat (NB-LRR) proteins play an important role in plant and mammalian innate immunity. In plants, these resistance proteins recognize specific pathogen-derived effector proteins. Recognition subsequently triggers a rapid and efficient defense response often associated with the hypersensitive response and other poorly understood processes that suppress the pathogen. To investigate mechanisms associated with the activation of disease resistance responses, we investigated proteins binding to the potato (Solanum tuberosum) NB-LRR protein Rx that confers extreme resistance to Potato virus X (PVX) in potato and Nicotiana benthamiana. By affinity purification experiments, we identified an endogenous N. benthamiana Ran GTPase-Activating Protein2 (RanGAP2) as an Rx-associated protein in vivo. Further characterization confirmed the specificity of this interaction and showed that the association occurs through their N-terminal domains. By specific virus-induced gene silencing of RanGAP2 in N. benthamiana carrying Rx, we demonstrated that this interaction is required for extreme resistance to PVX and suggest that RanGAP2 is part of the Rx signaling complex. These results implicate RanGAP-mediated cellular mechanisms, including nucleocytoplasmic trafficking, in the activation of disease resistance.
机译:核苷酸结合亮氨酸富集重复序列(NB-LRR)蛋白在植物和哺乳动物的先天免疫中起重要作用。在植物中,这些抗性蛋白识别特定的病原体衍生的效应蛋白。随后,识别会触发快速有效的防御反应,通常与过敏反应和其他抑制病原体的过程缺乏了解。为了研究与抗病反应的激活相关的机制,我们研究了与马铃薯(Solanum tuberosum)NB-LRR蛋白Rx结合的蛋白质,赋予马铃薯和Nicotiana benthamiana极强的马铃薯X病毒(PVX)抗性。通过亲和纯化实验,我们在体内鉴定了一种内源性本氏烟草冉GTP酶激活蛋白2(RanGAP2)作为Rx相关蛋白。进一步的表征证实了这种相互作用的特异性,并表明该结合通过其N-末端结构域发生。通过特定病毒诱导的携带Rx的本氏烟草中RanGAP2的基因沉默,我们证明了这种相互作用对于PVX的极端耐药性是必需的,并且表明RanGAP2是Rx信号复合物的一部分。这些结果暗示了RanGAP介导的细胞机制,包括核质运输,在抗病性的激活中。

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