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Intramolecular Interaction Influences Binding of the Flax L5 and L6 Resistance Proteins to their AvrL567 Ligands

机译:分子内相互作用影响亚麻L5和L6抗性蛋白与其AvrL567配体的结合。

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摘要

L locus resistance (R) proteins are nucleotide binding (NB-ARC) leucine-rich repeat (LRR) proteins from flax (Linum usitatissimum) that provide race-specific resistance to the causal agent of flax rust disease, Melampsora lini. L5 and L6 are two alleles of the L locus that directly recognize variants of the fungal effector AvrL567. In this study, we have investigated the molecular details of this recognition by site-directed mutagenesis of AvrL567 and construction of chimeric L proteins. Single, double and triple mutations of polymorphic residues in a variety of AvrL567 variants showed additive effects on recognition strength, suggesting that multiple contact points are involved in recognition. Domain-swap experiments between L5 and L6 show that specificity differences are determined by their corresponding LRR regions. Most positively selected amino acid sites occur in the N- and C-terminal LRR units, and polymorphisms in the first seven and last four LRR units contribute to recognition specificity of L5 and L6 respectively. This further confirms that multiple, additive contact points occur between AvrL567 variants and either L5 or L6. However, we also observed that recognition of AvrL567 is affected by co-operative polymorphisms between both adjacent and distant domains of the R protein, including the TIR, ARC and LRR domains, implying that these residues are involved in intramolecular interactions to optimize detection of the pathogen and defense signal activation. We suggest a model where Avr ligand interaction directly competes with intramolecular interactions to cause activation of the R protein.
机译:L基因抗性(R)蛋白是来自亚麻(Linum usitatissimum)的核苷酸结合(NB-ARC)富含亮氨酸的重复(LRR)蛋白,可对亚麻锈病病原菌Melampsora lini提供种族特异性的抗性。 L5和L6是L基因座的两个等位基因,它们直接识别真菌效应子AvrL567的变体。在这项研究中,我们通过定点诱变AvrL567和嵌合L蛋白的构建,研究了这种识别的分子细节。各种AvrL567变异体中多态性残基的单,双和三重突变显示出对识别强度的累加效应,表明识别中涉及多个接触点。 L5和L6之间的域交换实验表明,特异性差异是由它们相应的LRR区域决定的。最积极选择的氨基酸位点出现在N端和C端LRR单元中,前七个LRR单元和最后四个LRR单元中的多态性分别有助于L5和L6的识别特异性。这进一步证实了AvrL567变体与L5或L6之间存在多个附加接触点。但是,我们还观察到,AvrL567的识别受到R蛋白相邻和遥远域(包括TIR,ARC和LRR域)之间合作多态性的影响,这意味着这些残基参与分子内相互作用以优化对蛋白的检测。病原体和防御信号激活。我们建议一个模型,其中Avr配体相互作用直接与分子内相互作用竞争,从而引起R蛋白的激活。

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