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水稻中FLS2介导的信号激活与转导的结构和生化基础

Structural and biochemical basis of FLS2-mediated signal activation and transduction in rice.

作者信息

Zhao Qiaoqiao, Bao Jinlin, Li Huailong, Hu Wei, Kong Yanqiong, Zhong Yifeng, Fu Qiang, Xu Guolyu, Liu Fenmei, Jiao Xi, Jin Jian, Ming Zhenhua

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, College of Life Science and Technology, Guangxi Key Laboratory for Sugarcane Biology, Guangxi University, Nanning 530004, P.R. China.

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, College of Life Science and Technology, Guangxi Key Laboratory for Sugarcane Biology, Guangxi University, Nanning 530004, P.R. China.

出版信息

Plant Commun. 2024 Mar 11;5(3):100785. doi: 10.1016/j.xplc.2023.100785. Epub 2023 Dec 28.

Abstract

The receptor-like kinase FLAGELLIN-SENSITIVE 2 (FLS2) functions as a bacterial flagellin receptor localized on the cell membrane of plants. In Arabidopsis, the co-receptor BRI1-ASSOCIATED RECEPTOR KINASE 1 (BAK1) cooperates with FLS2 to detect the flagellin epitope flg22, resulting in formation of a signaling complex that triggers plant defense responses. However, the co-receptor responsible for recognizing and signaling the flg22 epitope in rice remains to be determined, and the precise structural mechanism underlying FLS2-mediated signal activation and transduction has not been clarified. This study presents the structural characterization of a kinase-dead mutant of the intracellular kinase domain of OsFLS2 (OsFLS2-KD) in complex with ATP or ADP, resolved at resolutions of 1.98 Å and 2.09 Å, respectively. Structural analysis revealed that OsFLS2 can adopt an active conformation in the absence of phosphorylation, although it exhibits only weak basal catalytic activity for autophosphorylation. Subsequent investigations demonstrated that OsSERK2 effectively phosphorylates OsFLS2, which reciprocally phosphorylates OsSERK2, leading to complete activation of OsSERK2 and rapid phosphorylation of the downstream substrate receptor-like cytoplasmic kinases OsRLCK176 and OsRLCK185. Through mass spectrometry experiments, we successfully identified critical autophosphorylation sites on OsSERK2, as well as sites transphosphorylated by OsFLS2. Furthermore, we demonstrated the interaction between OsSERK2 and OsFLS2, which is enhanced in the presence of flg22. Genetic evidence suggests that OsRLCK176 and OsRLCK185 may function downstream of the OsFLS2-mediated signaling pathway. Our study reveals the molecular mechanism by which OsFLS2 mediates signal transduction pathways in rice and provides a valuable example for understanding RLK-mediated signaling pathways in plants.

摘要

类受体激酶鞭毛蛋白敏感2(FLS2)作为一种定位于植物细胞膜上的细菌鞭毛蛋白受体发挥作用。在拟南芥中,共受体BRI1相关受体激酶1(BAK1)与FLS2协同作用以检测鞭毛蛋白表位flg22,从而形成一个触发植物防御反应的信号复合物。然而,水稻中负责识别flg22表位并传递信号的共受体仍有待确定,并且FLS2介导的信号激活和转导的精确结构机制尚未阐明。本研究展示了水稻FLS2(OsFLS2)细胞内激酶结构域的激酶失活突变体(OsFLS2-KD)与ATP或ADP复合物的结构特征,分辨率分别为1.98 Å和2.09 Å。结构分析表明,尽管OsFLS2对自身磷酸化仅表现出微弱的基础催化活性,但在没有磷酸化的情况下它可以采用活性构象。随后的研究表明,OsSERK2有效地磷酸化OsFLS2,而OsFLS2又反过来磷酸化OsSERK2,导致OsSERK2完全激活以及下游底物类受体细胞质激酶OsRLCK176和OsRLCK185快速磷酸化。通过质谱实验,我们成功鉴定了OsSERK2上关键的自身磷酸化位点以及被OsFLS2转磷酸化的位点。此外,我们证明了OsSERK2与OsFLS2之间的相互作用,在flg22存在的情况下这种相互作用会增强。遗传学证据表明,OsRLCK176和OsRLCK185可能在OsFLS2介导的信号通路下游发挥作用。我们的研究揭示了OsFLS2在水稻中介导信号转导途径的分子机制,并为理解植物中RLK介导的信号通路提供了一个有价值的例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecb6/10943584/61703c0be16d/gr1.jpg

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