The mechanistic target of rapamycin kinase complex 1 (MTORC1) is a central cellular kinase that integrates major signaling pathways, allowing for regulation of anabolic and catabolic processes including macroautophagy/autophagy and lysosomal biogenesis. Essential to these processes is the regulatory activity of TFEB (transcription factor EB). In a regulatory feedback loop modulating transcriptional levels of RRAG/Rag GTPases, TFEB controls MTORC1 tethering to membranes and induction of anabolic processes upon nutrient replenishment. We now show that TFEB promotes expression of endocytic genes and increases rates of cellular endocytosis during homeostatic baseline and starvation conditions. TFEB-mediated endocytosis drives assembly of the MTORC1-containing nutrient sensing complex through the formation of endosomes that carry the associated proteins RRAGD, the amino acid transporter SLC38A9, and activate AKT/protein kinase B (AKT p-T308). TFEB-induced signaling endosomes en route to lysosomes are induced by amino acid starvation and are required to dissociate TSC2, re-tether and activate MTORC1 on endolysosomal membranes. This study characterizes TFEB-mediated endocytosis as a critical process leading to activation of MTORC1 and autophagic function, thus identifying the importance of the dynamic endolysosomal system in cellular clearance.

TFEB-driven endocytosis coordinates MTORC1 signaling and autophagy / Nnah, Israel C; Wang, Biao; Saqcena, Chaitali; Weber, Gregory F; Bonder, Edward M; Bagley, Dustin; De Cegli, Rossella; Napolitano, Gennaro; Medina, Diego L; Ballabio, Andrea; Dobrowolski, Radek; MEDINA SANABRIA, Diego Luis. - In: AUTOPHAGY. - ISSN 1554-8627. - (2019). [10.1080/15548627.2018.1511504]

TFEB-driven endocytosis coordinates MTORC1 signaling and autophagy

Napolitano, Gennaro;Ballabio, Andrea;MEDINA SANABRIA, Diego Luis
2019

Abstract

The mechanistic target of rapamycin kinase complex 1 (MTORC1) is a central cellular kinase that integrates major signaling pathways, allowing for regulation of anabolic and catabolic processes including macroautophagy/autophagy and lysosomal biogenesis. Essential to these processes is the regulatory activity of TFEB (transcription factor EB). In a regulatory feedback loop modulating transcriptional levels of RRAG/Rag GTPases, TFEB controls MTORC1 tethering to membranes and induction of anabolic processes upon nutrient replenishment. We now show that TFEB promotes expression of endocytic genes and increases rates of cellular endocytosis during homeostatic baseline and starvation conditions. TFEB-mediated endocytosis drives assembly of the MTORC1-containing nutrient sensing complex through the formation of endosomes that carry the associated proteins RRAGD, the amino acid transporter SLC38A9, and activate AKT/protein kinase B (AKT p-T308). TFEB-induced signaling endosomes en route to lysosomes are induced by amino acid starvation and are required to dissociate TSC2, re-tether and activate MTORC1 on endolysosomal membranes. This study characterizes TFEB-mediated endocytosis as a critical process leading to activation of MTORC1 and autophagic function, thus identifying the importance of the dynamic endolysosomal system in cellular clearance.
2019
TFEB-driven endocytosis coordinates MTORC1 signaling and autophagy / Nnah, Israel C; Wang, Biao; Saqcena, Chaitali; Weber, Gregory F; Bonder, Edward M; Bagley, Dustin; De Cegli, Rossella; Napolitano, Gennaro; Medina, Diego L; Ballabio, Andrea; Dobrowolski, Radek; MEDINA SANABRIA, Diego Luis. - In: AUTOPHAGY. - ISSN 1554-8627. - (2019). [10.1080/15548627.2018.1511504]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/721112
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