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The Coiled-Coil and Nucleotide Binding Domains of the Potato Rx Disease Resistance Protein Function in Pathogen Recognition and Signaling

机译:马铃薯Rx病抗性蛋白在病原体识别和信号转导中的卷曲螺旋和核苷酸结合域

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摘要

Plant genomes encode large numbers of nucleotide binding and leucine-rich repeat (NB-LRR) proteins, some of which mediate the recognition of pathogen-encoded proteins. Following recognition, the initiation of a resistance response is thought to be mediated by the domains present at the N termini of NB-LRR proteins, either a Toll and Interleukin-1 Receptor or a coiled-coil (CC) domain. In order to understand the role of the CC domain in NB-LRR function, we have undertaken a systematic structure–function analysis of the CC domain of the potato (Solanum tuberosum) CC-NB-LRR protein Rx, which confers resistance to Potato virus X. We show that the highly conserved EDVID motif of the CC domain mediates an intramolecular interaction that is dependent on several domains within the rest of the Rx protein, including the NB and LRR domains. Other conserved and nonconserved regions of the CC domain mediate the interaction with the Ran GTPase–activating protein, RanGAP2, a protein required for Rx function. Furthermore, we show that the Rx NB domain is sufficient for inducing cell death typical of hypersensitive plant resistance responses. We describe a model of CC-NB-LRR function wherein the LRR and CC domains coregulate the signaling activity of the NB domain in a recognition-specific manner.
机译:植物基因组编码大量核苷酸结合和富亮氨酸重复(NB-LRR)蛋白,其中一些介导病原体编码蛋白的识别。识别后,认为耐药反应的启动是由存在于NB-LRR蛋白N末端的结构域介导的,该结构域是Toll和Interleukin-1受体或卷曲螺旋(CC)结构域。为了了解CC结构域在NB-LRR功能中的作用,我们对马铃薯(Solanum tuberosum)CC-NB-LRR蛋白Rx的CC结构域进行了系统结构-功能分析,该结构赋予了对马铃薯病毒的抗性X.我们显示,CC域的高度保守的EDVID基序介导了分子内相互作用,该相互作用取决于Rx蛋白其余部分中的几个域,包括NB和LRR域。 CC域的其他保守和非保守区域介导与Ran GTPase激活蛋白RanGAP2(Rx功能所需的蛋白)的相互作用。此外,我们表明Rx NB域足以诱导典型的超敏植物抗性反应的细胞死亡。我们描述了CC-NB-LRR功能的模型,其中LRR和CC域以识别特定的方式整合了NB域的信号传导活性。

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