应力颗粒
生物
拟南芥
细胞生物学
热休克蛋白
热应力
核糖核酸
蛋白质生物合成
生物物理学
信使核糖核酸
翻译(生物学)
生物化学
基因
突变体
动物科学
作者
Shaobo Zhu,Jinge Gu,Juanjuan Yao,Yichen Li,Zheting Zhang,Wencheng Xia,Zhen Wang,Xinrui Gui,Leiting Li,Dan Li,Heng Zhang,Cong Liu
标识
DOI:10.1016/j.devcel.2022.02.005
摘要
As sessile organisms, plants are highly sensitive to environmental stresses. In response to stresses, globally repressed translation initiation leads to stress granule (SG) formation. Protein liquid-liquid phase separation (LLPS) contributes to SG formation, but a direct link between protein LLPS and stress resistance has not yet been found in plants. Here, we report that two RNA-binding proteins, RBGD2 and RBGD4, function redundantly to improve heat resistance in Arabidopsis. RBGD2 and RBGD4 undergo LLPS in vitro and condense into heat-induced SGs in vivo via tyrosine residue array (TRA). Importantly, disrupting LLPS by mutating TRA abolishes RBGD2/4 condensation in SGs and impairs their protective function against heat stress (HS). Further study found that upon HS, the RBGD2/4 interaction network expands with additional SG proteins and heat-responsive mRNA. Our work shows a mechanistic basis that underlies protein LLPS in HS response in plants and suggests manipulation of protein LLPS as a general strategy to improve plant stress resistance.
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