内吞作用
生物
细胞外
果胶
细胞生物学
受体
细胞
细胞表面受体
生物化学
作者
Ming‐Che Liu,Fang‐Ling Yeh,Robert Yvon,K.J. Simpson,Samuel Jordan,James J. Chambers,Hen‐Ming Wu,Alice Y. Cheung
出处
期刊:Cell
[Elsevier]
日期:2023-12-28
卷期号:187 (2): 312-330.e22
被引量:24
标识
DOI:10.1016/j.cell.2023.11.038
摘要
Summary
The FERONIA (FER)-LLG1 co-receptor and its peptide ligand RALF regulate myriad processes for plant growth and survival. Focusing on signal-induced cell surface responses, we discovered that intrinsically disordered RALF triggers clustering and endocytosis of its cognate receptors and FER- and LLG1-dependent endocytosis of non-cognate regulators of diverse processes, thus capable of broadly impacting downstream responses. RALF, however, remains extracellular. We demonstrate that RALF binds the cell wall polysaccharide pectin. They phase separate and recruit FER and LLG1 into pectin-RALF-FER-LLG1 condensates to initiate RALF-triggered cell surface responses. We show further that two frequently encountered environmental challenges, elevated salt and temperature, trigger RALF-pectin phase separation, promiscuous receptor clustering and massive endocytosis, and that this process is crucial for recovery from stress-induced growth attenuation. Our results support that RALF-pectin phase separation mediates an exoskeletal mechanism to broadly activate FER-LLG1-dependent cell surface responses to mediate the global role of FER in plant growth and survival.
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