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Retromer and TBC1D5 maintain late endosomal RAB7 domains to enable amino acid-induced mTORC1 signaling.

J Cell Biol. 2019; 
Kvainickas Arunas,Nägele Heike,Qi Wenjing,Dokládal Ladislav,Jimenez-Orgaz Ana,Stehl Luca,Gangurde Dipak,Zhao Qian,Hu Zehan,Dengjel Jörn,De Virgilio Claudio,Baumeister Ralf,Steinberg Flo
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Phospho-Specific Antibody Services TORC1 activity was assessed as the ratio between the phosphorylation on Thr737 of full-length Sch9 (or GFP-Sch9) compared with the total abundance of Sch9 (or GFP-Sch9) using phosphospecific anti-pThr737-Sch9 produced by GenScript and antiSch9 antibodies (Peli-Gulli et al., 2015 ´ ). Get A Quote

摘要

Retromer is an evolutionarily conserved multiprotein complex that orchestrates the endocytic recycling of integral membrane proteins. Here, we demonstrate that retromer is also required to maintain lysosomal amino acid signaling through mTORC1 across species. Without retromer, amino acids no longer stimulate mTORC1 translocation to the lysosomal membrane, which leads to a loss of mTORC1 activity and increased induction of autophagy. Mechanistically, we show that its effect on mTORC1 activity is not linked to retromer's role in the recycling of transmembrane proteins. Instead, retromer cooperates with the RAB7-GAP TBC1D5 to restrict late endosomal RAB7 into microdomains that are spatially separated fro... More

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