State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences, Henan University, Kaifeng, 475004, China.
Key Laboratory of Plant Resources, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China.
New Phytol. 2022 Jul;235(2):518-532. doi: 10.1111/nph.18127. Epub 2022 Apr 20.
The plant receptor-like kinase FERONIA (FER) functions in the response to multiple extracellular signals, thereby regulating diverse cellular processes, such as polarized cell growth, hormone signaling and responses to pathogens. Here, we reported that in Arabidopsis thaliana, flagellin peptide flg22 stimulus significantly promoted the lateral mobility and dissociation of FER from the plasma membrane by inducing the association of FER with membrane microdomain components. FER underwent constitutive endocytosis and recycling in a brefeldin A (BFA)-sensitive manner via a clathrin-mediated pathway. Following flg22 elicitation, FER localized to bona fide endosomes via two distinct endocytic routes, showing differential sensitivity to BFA. These results at the single-particle level confirm that FER acts as an essential regulator during flg22 perception and immune activation, thus broadening our understanding of location-specific protein dynamics and membrane trafficking in receptor/receptor kinase signaling.
植物类受体激酶 FERONIA(FER)在响应多种细胞外信号方面发挥作用,从而调节多种细胞过程,如极化细胞生长、激素信号和对病原体的反应。在这里,我们报道在拟南芥中,鞭毛蛋白肽 flg22 刺激通过诱导 FER 与膜微区成分的结合,显著促进了 FER 从质膜的侧向流动性和解离。FER 通过网格蛋白介导的途径以 BFA 敏感的方式进行组成型内吞和循环。在 flg22 引发后,FER 通过两种不同的内吞途径定位于真正的内体,对 BFA 的敏感性不同。这些单颗粒水平的结果证实 FER 作为 flg22 感知和免疫激活过程中的必需调节剂发挥作用,从而拓宽了我们对受体/受体激酶信号转导中位置特异性蛋白动力学和膜运输的理解。