磷酸烯醇丙酮酸羧激酶
脱磷
生物化学
磷酸化
糖异生
磷酸糖
生物
PEP群易位
糖
激酶
突变体
底物水平磷酸化
拟南芥
光合作用
化学
新陈代谢
信号转导
蛋白质磷酸化
细胞生物学
糖酵解
碳水化合物代谢
生物合成
代谢途径
蛋白激酶A
磷酸烯醇式丙酮酸羧化酶
油菜素甾醇
作者
Hongliang Zhang,Yalikunjiang Aizezi,Kanako Bessho‐Uehara,Ajeet Chaudhary,Cao Sơn Trịnh,Shou‐Ling Xu,Zhiyong Wang
标识
DOI:10.1038/s41477-026-02379-5
摘要
Sugar is both an essential energy source and the major substrate for cell wall biosynthesis during plant growth, yet how growth-promoting hormones regulate sugar synthesis remains unclear. Here, we show that brassinosteroids (BRs) promote gluconeogenic and photosynthetic sugar synthesis by activating phosphoenolpyruvate carboxykinase (PCK), which catalyzes the conversion of oxaloacetate to phosphoenolpyruvate, a central step in primary metabolism. Arabidopsis BR-deficient mutants display reduced PCK1 activity and elevated phosphorylation at conserved Ser-62 and Thr-66 residues. BR treatment induces PCK1 dephosphorylation and activation, whereas the GSK3-like kinase BIN2 phosphorylates these sites, altering quaternary structure and inactivating PCK1. Phospho-blocking mutations of Ser-62/Thr-66 confer BR-independent PCK1 activity and enhance seedling growth, while phosphomimetic mutations reduce PCK1 activity and impair seedling growth and establishment. BR also promotes PCK dephosphorylation and activation in photosynthetic leaves of maize and sorghum. Our study demonstrates that BR regulates primary metabolism through GSK3/BIN2 phosphorylation of PCK, thereby promoting gluconeogenesis and photosynthesis.
科研通智能强力驱动
Strongly Powered by AbleSci AI