Three highly conserved hydrophobic residues in the predicted α2‐helix of rice NLR protein Pit contribute to its localization and immune induction

拟南芥 生物 同源建模 细胞生物学 亚细胞定位 蛋白质结构 信号转导 信号转导衔接蛋白 免疫受体 受体 蛋白质结构域 免疫系统 生物化学 遗传学 基因 突变体
作者
Qiong Wang,Yuying Li,Ken‐ichi Kosami,Chaochao Liu,Jing Li,Dan Zhang,Daisuke Miki,Yoji Kawano
出处
期刊:Plant Cell and Environment [Wiley]
卷期号:45 (6): 1876-1890 被引量:6
标识
DOI:10.1111/pce.14315
摘要

Nucleotide-binding leucine-rich repeat (NLR) proteins work as crucial intracellular immune receptors. N-terminal domains of NLRs fall into two groups, coiled-coil (CC) and Toll-interleukin 1 receptor domains, which play critical roles in signal transduction and disease resistance. However, the activation mechanisms of NLRs, and how their N-termini function in immune induction, remain largely unknown. Here, we revealed that the CC domain of a rice NLR Pit contributes to self-association. The Pit CC domain possesses three conserved hydrophobic residues that are known to be involved in oligomer formation in two NLRs, barley MLA10 and Arabidopsis RPM1. Interestingly, the function of these residues in Pit differs from that in MLA10 and RPM1. Although three hydrophobic residues are important for Pit-induced disease resistance against rice blast fungus, they do not participate in self-association or binding to downstream signalling molecules. By homology modelling of Pit using the Arabidopsis ZAR1 structure, we tried to clarify the role of three conserved hydrophobic residues and found that they are located in the predicted α2-helix of the Pit CC domain and involved in the plasma membrane localization. Our findings provide novel insights for understanding the mechanisms of NLR activation as well as the relationship between subcellular localization and immune induction.
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