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Integrity of the Post-LRR Domain Is Required for TIR-NB-LRR Function

机译:TIR-NB-LRR功能需要后LRR域的完整性

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Plants trigger appropriate defense responses, notably, through intracellular nucleotide-binding (NB) and leucine-rich repeat (LRR)-containing receptors (NLRs) that detect secreted pathogen effector proteins. In NLR resistance genes, the toll/interleukin-1 receptor (TIR)-NB-LRR proteins (TNLs) are an important subfamily, out of which approximately half the members carry a post-LRR (PL) domain of unknown role. We first investigated the requirement of the PL domain for TNL-mediated immune response by mutating the most conserved amino acids across PL domains of Arabidopsis thaliana TNLs. We identified several amino acids in the PL domain of RPS4, required for its ability to trigger a hypersensitive response to AvrRps4 in a Nicotiana tabacum transient assay. Mutating the corresponding amino acids within the PL domain of the tobacco TNL gene N also affected its function. Consequently, our results indicate that the integrity of the PL domain at conserved positions is crucial for at least two unrelated TNLs. We then tested the PL domain specificity for function by swapping PL domains between the paralogs RPS4 and RPS4B. Our results suggest that the PL domain is involved in their TNL pair specificity, ‘off state’ stability, and NLR complex activation. Considering genetically paired Arabidopsis TNLs, we finally compared the PL and TIR domains of their sensor and executor sequences, respectively. While TIR and PL domains from executors present complete motifs, sensors showed a lack of conservation with degenerated motifs. We here provide a contribution to the functional analysis of the PL domain in order to decipher its role for TNL function. Copyright ? 2021 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license.
机译:植物触发适当的防御反应,特别是通过检测分泌的病原体效应蛋白的细胞内核苷酸结合(Nb)和富含亮氨酸的重复(LRR)的受体(NLR)。在NLR抗性基因中,Toll /白细胞介素-1受体(TIR)-NB-LRR蛋白(TNL)是重要的亚家族,其中大约一半的成员携带未知作用的后LRR(PL)结构域。我们首先通过突变拟南芥TNL的Pl域突变最保守的氨基酸来研究PL结构域进行TNL介导的免疫应答。我们在RPS4的PL域中鉴定了几种氨基酸,其能够在尼古利亚塔Tabacum瞬时测定中引发对AVRRPS4的过敏反应。在烟草TNL基因N的PL结构域内突变相应的氨基酸也影响其功能。因此,我们的结果表明,在保守位置处的PL结构域的完整性对于至少两个不相关的TNL是至关重要的。然后,我们通过在Paralogs RPS4和RPS4B之间交换PL域来测试PL域特异性。我们的结果表明,PL域涉及其TNL对特异性,“关州”稳定性和NLR复杂激活。考虑到遗传成对的拟南芥TNL,我们最终分别比较了其传感器和执行者序列的PL和TIR域。虽然来自执行者的TIR和PL域具有完整的主题,但传感器表明缺乏堕落的主题缺乏保护。我们在这里为PL域的功能分析提供了贡献,以便破译其对TNL函数的作用。版权? 2021提交人。这是在CC By-NC-ND 4.0国际许可下分发的开放式访问文章。

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