细胞生物学
基因亚型
化学
调节器
脂质双层融合
下调和上调
细胞内
转运蛋白
血浆蛋白结合
生物物理学
舱室(船)
胞吐
生物化学
小泡
膜蛋白
圈套复合体
融合蛋白
内吞作用
生物
膜泡运输蛋白质类
囊泡融合
缺氧(环境)
膜转运
蛋白质结构域
膜
绑定域
细胞膜
内体
囊泡转运蛋白
作者
Pia E Ferle,Niklas Krause,Judith Koliwer,Jörn Michael Völker,Fabia Becker,Alexander Hillebrand,Leonie F. Schröder,Stefanie Jager,Seby Edassery,Dali Liu,Nevan J Krogan,Jeffrey N. Savas,Gabriele Fischer von Mollard,Michael Schwake,Pia E Ferle,Niklas Krause,Judith Koliwer,Jörn Michael Völker,Fabia Becker,Alexander Hillebrand
标识
DOI:10.1073/pnas.2511307122
摘要
BET1, GOSR2, and STX5 variants can cause fatal inherited diseases, including epilepsies, muscular dystrophy, and multisystemic disorders. Together with Sec22b, they form a SNARE complex that mediates fusion of ER-derived vesicles with the ER-Golgi-intermediate compartment and the cis -Golgi. The Sec1/Munc18 protein SCFD1/Sly1 accelerates ER-to-Golgi SNARE complex assembly and membrane fusion, but much less is known about downregulation of ER-to-Golgi trafficking under cellular stress conditions. Here, we identify the lactate and hypoxia sensor protein NDRG3 as a binding partner of the ER-to-Golgi SNARE complex. NDRG3 binds via its C-terminal domain to the N-terminal domain of the long isoform of Stx5, thereby impairing ER-to-Golgi trafficking under hypoxic conditions and elevated intracellular lactate levels. In NDRG3-deficient cells, hypoxia- and lactate-induced inhibition of ER-to-Golgi trafficking is abolished. Our work identifies NDRG3 as a negative regulator of ER-to-Golgi SNARE complex function, mechanistically linking hypoxia and lactate to membrane trafficking in the secretory pathway.
科研通智能强力驱动
Strongly Powered by AbleSci AI