Bai Pengfei, Vu Minh Huy, Komatsu Chiaki, Papoulas Ophelia, Ebine Kazuo, Nozawa Akira, Sawasaki Tatsuya, Ueda Takashi, Marcotte Edward M, Torii Keiko U
Howard Hughes Medical Institute, The University of Texas, Austin, TX 78712, USA.
Department of Molecular Biosciences, The University of Texas, Austin, TX 78712, USA.
bioRxiv. 2025 Jul 23:2025.07.20.665823. doi: 10.1101/2025.07.20.665823.
Receptor kinases are pivotal for growth, development, and environmental response of plants. Yet, their regulatory mechanisms and spatial dynamics are still underexplored. The ERECTA-family receptor kinases coordinate diverse developmental processes, including stomatal development. To understand the proteomic landscape of the ERECTA-mediated signaling pathways, we here report comparative analyses of the ERECTA interactome and proximitome by epitope-tagged affinity-purification (ET-AP) and TurboID-based proximity labeling (TbID-PL) mass-spectrometry, respectively. While ET-AP successfully recovered receptor complex components (e.g., TOO MANY MOUTHS), TbID-PL effectively captured transient associations with the components of endosomal trafficking, clathrin-mediated endocytosis (CME) machinery. We further identify that specific subfamily members of phosphatidylinositol-binding clathrin assembly proteins (PICALMs) interact with and synergistically regulate ERECTA internalization. Mutations of these impair ERECTA endocytosis and lead to excessive stomatal clustering. Taken together, our work provides a proteomic atlas of the ERECTA signaling network and suggests that timely removal of receptor kinase by the endocytosis machinery is essential for active signal transduction enforcing stomatal patterning.
受体激酶对植物的生长、发育和环境响应至关重要。然而,它们的调控机制和空间动态仍未得到充分探索。ERECTA家族受体激酶协调多种发育过程,包括气孔发育。为了解ERECTA介导的信号通路的蛋白质组学概况,我们在此分别通过表位标签亲和纯化(ET-AP)和基于TurboID的邻近标记(TbID-PL)质谱法报告了ERECTA相互作用组和邻近组的比较分析。虽然ET-AP成功回收了受体复合物成分(例如,过多的口器),但TbID-PL有效地捕获了与内体运输成分、网格蛋白介导的内吞作用(CME)机制的瞬时关联。我们进一步确定,磷脂酰肌醇结合网格蛋白组装蛋白(PICALMs)的特定亚家族成员与ERECTA内化相互作用并协同调节。这些成员的突变会损害ERECTA内吞作用并导致气孔过度聚集。综上所述,我们的工作提供了ERECTA信号网络的蛋白质组图谱,并表明通过内吞作用机制及时去除受体激酶对于强化气孔模式的活跃信号转导至关重要。