Qi Fan, Li Jianwei, Ai Yingfei, Shangguan Keke, Li Ping, Lin Fucheng, Liang Yan
Zhejiang Xianghu Laboratory, Department of Plant Protection, Zhejiang University, Hangzhou 310058, China.
State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products, Hangzhou 311200, China.
Cell Host Microbe. 2024 Mar 13;32(3):425-440.e7. doi: 10.1016/j.chom.2024.01.011. Epub 2024 Feb 2.
In plant immunity, phosphatidic acid (PA) regulates reactive oxygen species (ROS) by binding to respiratory burst oxidase homolog D (RBOHD), an NADPH oxidase responsible for ROS production. Here, we analyze the influence of PA binding on RBOHD activity and the mechanism of RBOHD-bound PA generation. PA binding enhances RBOHD protein stability by inhibiting vacuolar degradation, thereby increasing chitin-induced ROS production. Mutations in diacylglycerol kinase 5 (DGK5), which phosphorylates diacylglycerol to produce PA, impair chitin-induced PA and ROS production. The DGK5 transcript DGK5β (but not DGK5α) complements reduced PA and ROS production in dgk5-1 mutants, as well as resistance to Botrytis cinerea. Phosphorylation of S506 residue in the C-terminal calmodulin-binding domain of DGK5β contributes to the activation of DGK5β to produce PA. These findings suggest that DGK5β-derived PA regulates ROS production by inhibiting RBOHD protein degradation, elucidating the role of PA-ROS interplay in immune response regulation.
在植物免疫中,磷脂酸(PA)通过与呼吸爆发氧化酶同源物D(RBOHD)结合来调节活性氧(ROS),RBOHD是一种负责ROS产生的NADPH氧化酶。在此,我们分析了PA结合对RBOHD活性的影响以及RBOHD结合的PA产生的机制。PA结合通过抑制液泡降解增强RBOHD蛋白稳定性,从而增加几丁质诱导的ROS产生。二酰甘油激酶5(DGK5)将二酰甘油磷酸化以产生PA,其突变会损害几丁质诱导的PA和ROS产生。DGK5转录本DGK5β(而非DGK5α)可补充dgk5 - 1突变体中减少的PA和ROS产生,以及对灰葡萄孢的抗性。DGK5β C末端钙调蛋白结合结构域中S506残基的磷酸化有助于激活DGK5β以产生PA。这些发现表明,DGK5β衍生的PA通过抑制RBOHD蛋白降解来调节ROS产生,阐明了PA - ROS相互作用在免疫反应调节中的作用。