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首页> 外文期刊>Plant physiology >Structural determinants at the interface of the ARC2 and leucine-rich repeat domains control the activation of the plant immune receptors Rx1 and Gpa2
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Structural determinants at the interface of the ARC2 and leucine-rich repeat domains control the activation of the plant immune receptors Rx1 and Gpa2

机译:ARC2和富含亮氨酸的重复结构域界面上的结构决定簇控制着植物免疫受体Rx1和Gpa2的激活

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摘要

Many plant and animal immune receptors have a modular nucleotide-binding-leucine-rich repeat (NB-LRR) architecture in which a nucleotide-binding switch domain, NB-ARC, is tethered to a LRR sensor domain. The cooperation between the switch and sensor domains, which regulates the activation of these proteins, is poorly understood. Here, we report structural determinants governing the interaction between the NB-ARC and LRR in the highly homologous plant immune receptors Gpa2 and Rx1, which recognize the potato cyst nematode Globodera pallida and Potato virus X, respectively. Systematic shuffling of polymorphic sites between Gpa2 and Rx1 showed that a minimal region in the ARC2 and N-terminal repeats of the LRR domain coordinate the activation state of the protein. We identified two closely spaced amino acid residues in this region of the ARC2 (positions 401 and 403) that distinguish between autoactivation and effector-triggered activation. Furthermore, a highly acidic loop region in the ARC2 domain and basic patches in the N-terminal end of the LRR domain were demonstrated to be required for the physical interaction between the ARC2 and LRR. The NB-ARC and LRR domains dissociate upon effector-dependent activation, and the complementary-charged regions are predicted to mediate a fast reassociation, enabling multiple rounds of activation. Finally, we present a mechanistic model showing how the ARC2, NB, and N-terminal half of the LRR form a clamp, which regulates the dissociation and reassociation of the switch and sensor domains in NB-LRR proteins.
机译:许多动植物免疫受体具有模块化的富含核苷酸结合亮氨酸的重复序列(NB-LRR)结构,其中核苷酸结合转换域NB-ARC被束缚在LRR传感器域上。调节这些蛋白质的激活的开关域和传感器域之间的合作知之甚少。在这里,我们报告了决定高度同源的植物免疫受体Gpa2和Rx1中的NB-ARC和LRR之间相互作用的结构决定簇,它们分别识别马铃薯囊肿线虫Globodera pallida和马铃薯X病毒。 Gpa2和Rx1之间的多态性位点的系统改组显示ARC2和LRR域的N末端重复中的最小区域协调了蛋白质的激活状态。我们在ARC2的这一区域(位置401和403)中确定了两个紧密间隔的氨基酸残基,以区分自动激活和效应触发激活。此外,证明ARC2和LRR之间的物理相互作用需要ARC2域中的高酸性环区和LRR域N末端的基本斑块。 NB-ARC和LRR域在依赖效应子的激活下解离,并且预测带电荷的区域介导快速重结合,从而实现多轮激活。最后,我们提供了一个机械模型,显示了ARC2,NB和LRR的N端一半如何形成钳位,该钳位调节NB-LRR蛋白中开关和传感器结构域的解离和重新关联。

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