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首页> 外文期刊>Plant physiology >Structure-function analysis of the coiled-coil and leucine-rich repeat domains of the RPS5 disease resistance protein
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Structure-function analysis of the coiled-coil and leucine-rich repeat domains of the RPS5 disease resistance protein

机译:RPS5抗病蛋白的卷曲螺旋和富含亮氨酸的重复结构域的结构功能分析

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The Arabidopsis (Arabidopsis thaliana) RESISTANCE TO PSEUDOMONAS SYRINGAE5 (RPS5) disease resistance protein mediates recognition of the Pseudomonas syringae effector protein AvrPphB. RPS5 belongs to the coiled-coil-nucleotide-binding site-leucine-rich repeat (CC-NBS-LRR) family and is activated by AvrPphB-mediated cleavage of the protein kinase PBS1. Here, we present a structure-function analysis of the CC and LRR domains of RPS5 using transient expression assays in Nicotiana benthamiana. We found that substituting the CC domain of RPS2 for the RPS5 CC domain did not alter RPS5 specificity and only moderately reduced its ability to activate programmed cell death, suggesting that the CC domain does not play a direct role in the recognition of PBS1 cleavage. Analysis of an RPS5-super Yellow Fluorescent Protein fusion revealed that RPS5 localizes to the plasma membrane (PM). Alanine substitutions of predicted myristoylation (glycine-2) and palmitoylation (cysteine-4) residues affected RPS5 PM localization, protein stability, and function in an additive manner, indicating that PM localization is essential to RPS5 function. The first 20 amino acids of RPS5 were sufficient for directing super Yellow Fluorescent Protein to the PM. C-terminal truncations of RPS5 revealed that the first four LRR repeats are sufficient for inhibiting RPS5 autoactivation; however, the complete LRR domain was required for the recognition of PBS1 cleavage. Substitution of the RPS2 LRR domain resulted in the autoactivation of RPS5, indicating that the LRR domain must coevolve with the NBS domain. We conclude that the RPS5 LRR domain functions to suppress RPS5 activation in the absence of PBS1 cleavage and promotes RPS5 activation in its presence.
机译:拟南芥(Arabidopsis thaliana)对假单胞菌SYRINGAE5(RPS5)的抗病蛋白介导了丁香假单胞菌效应蛋白AvrPphB的识别。 RPS5属于卷曲螺旋核苷酸结合位点-富含亮氨酸的重复序列(CC-NBS-LRR)家族,并通过AvrPphB介导的蛋白激酶PBS1的裂解而被激活。在这里,我们介绍了在本氏烟草中使用瞬时表达测定法对RPS5的CC和LRR结构域进行结构功能分析。我们发现,用RPS2的CC结构域代替RPS5 CC结构域不会改变RPS5的特异性,只会适度降低其激活程序性细胞死亡的能力,这表明CC结构域在识别PBS1裂解中没有直接作用。对RPS5超级黄色荧光蛋白融合物的分析显示,RPS5定位于质膜(PM)。预测的肉豆蔻酰化(甘氨酸2)和棕榈酰化(半胱氨酸4)残基的丙氨酸取代以附加方式影响RPS5的PM定位,蛋白质稳定性和功能,表明PM定位对于RPS5的功能至关重要。 RPS5的前20个氨基酸足以将超级黄色荧光蛋白引导至PM。 RPS5的C端截短表明,前四个LRR重复足以抑制RPS5自激活。然而,完整的LRR域是识别PBS1切割所必需的。 RPS2 LRR域的替代导致RPS5的自动激活,表明LRR域必须与NBS域共同进化。我们得出的结论是,RPS5 LRR域在不存在PBS1裂解的情况下起抑制RPS5激活的作用,并在其存在下促进RPS5激活。

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