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An SH3PX1-Dependent Endocytosis-Autophagy Network Restrains Intestinal Stem Cell Proliferation by Counteracting EGFR-ERK Signaling.

Dev Cell. 2019-05; 
ZhangPeng,HolowatyjAndreana N,RoyTaylor,PronovostStephen M,MarchettiMarco,LiuHanbin,UlrichCornelia M,EdgarBru
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摘要

The effect of intracellular vesicle trafficking on stem-cell behavior is largely unexplored. We screened the Drosophila sorting nexins (SNXs) and discovered that one, SH3PX1, profoundly affects gut homeostasis and lifespan. SH3PX1 restrains intestinal stem cell (ISC) division through an endocytosis-autophagy network that includes Dynamin, Rab5, Rab7, Atg1, 5,?6, 7, 8a, 9, 12, 16, and Syx17. Blockages in this?network stabilize ligand-activated EGFRs, recycling them via Rab11-dependent endosomes to the plasma membrane. This hyperactivated ERK, calcium signaling, and ER stress, autonomously stimulating ISC proliferation. The excess divisions induced epithelial stress, Yki activi... More

关键词

Drosophila sorting nexins,EGFR-Ras-MAPK,Keren,Rab GTPases,SH3PX1,autophagy-related proteins,calcium signaling,colorectal cancer,endocytosis-autophagy network,intestinal stem-cell prolifera