质外体
生长素
细胞生物学
拟南芥
磷酸化
质膜Ca2+ATPase
细胞膜
ATP酶
细胞
化学
生物
生物物理学
细胞壁
生物化学
酶
突变体
基因
作者
Wenwei Lin,Xiang Zhou,Wenxin Tang,Koji Takahashi,Xue Pan,Jiawei Dai,Hong Yu Ren,Xiaoyue Zhu,Songqin Pan,Haiyan Zheng,William M. Gray,Tongda Xu,Toshinori Kinoshita,Zhenbiao Yang
出处
期刊:Nature
[Springer Nature]
日期:2021-10-27
卷期号:599 (7884): 278-282
被引量:163
标识
DOI:10.1038/s41586-021-03976-4
摘要
Abstract The phytohormone auxin controls many processes in plants, at least in part through its regulation of cell expansion 1 . The acid growth hypothesis has been proposed to explain auxin-stimulated cell expansion for five decades, but the mechanism that underlies auxin-induced cell-wall acidification is poorly characterized. Auxin induces the phosphorylation and activation of the plasma membrane H + -ATPase that pumps protons into the apoplast 2 , yet how auxin activates its phosphorylation remains unclear. Here we show that the transmembrane kinase (TMK) auxin-signalling proteins interact with plasma membrane H + -ATPases, inducing their phosphorylation, and thereby promoting cell-wall acidification and hypocotyl cell elongation in Arabidopsis . Auxin induced interactions between TMKs and H + -ATPases in the plasma membrane within seconds, as well as TMK-dependent phosphorylation of the penultimate threonine residue on the H+-ATPases. Our genetic, biochemical and molecular evidence demonstrates that TMKs directly phosphorylate plasma membrane H + -ATPase and are required for auxin-induced H + -ATPase activation, apoplastic acidification and cell expansion. Thus, our findings reveal a crucial connection between auxin and plasma membrane H + -ATPase activation in regulating apoplastic pH changes and cell expansion through TMK-based cell surface auxin signalling.
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