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Transient Receptor Potential V Channels Are Essential for Glucose Sensing by Aldolase and AMPK.

Cell Metab.. 2019-06; 
LiMengqi,ZhangChen-Song,ZongYue,FengJin-Wei,MaTeng,HuMeiqin,LinZhizhong,LiXiaotong,XieChangchuan,WuYaying,JiangDong,LiYing,ZhangCixiong,TianXiao,WangWen,YangYanyan,ChenJie,CuiJiwen,WuYu-Qing,ChenXin,LiuQing-Feng,WuJianfeng,LinShu-Yong,YeZhiyun,LiuYing,PiaoHai-Long,YuLi,ZhouZhuan,XieXiao-Song,HardieD Grahame,LinSheng
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摘要

Fructose-1,6-bisphosphate (FBP) aldolase links sensing of declining glucose availability to AMPK activation via the lysosomal pathway. However, how aldolase transmits lack of occupancy by FBP to AMPK activation remains unclear. Here, we show that FBP-unoccupied aldolase interacts with and inhibits endoplasmic reticulum (ER)-localized transient receptor potential channel subfamily V, inhibiting calcium release in low glucose. The decrease of calcium at contact sites between ER and lysosome renders the inhibited TRPV accessible to bind the lysosomal v-ATPase that then recruits AXIN:LKB1 to activate AMPK independently of AMP. Genetic depletion of TRPVs blocks glucose starvation-induced AMPK activation in c... More

关键词

AMP-activated protein kinase,AMPK,TRPV,aldolase,glucose sensing,transient receptor potential channels,v-AT
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