mTORC1 controls Golgi architecture and vesicle secretion by phosphorylation of SCYL1

mTORC1 is a master regulator of cell growth with well-known functions in inhibiting autophagic vesicle formation. Here, the authors show that mTORC1 also affects Golgi architecture and vesicle secretion by phosphorylating the scaffold protein SCYL1.

Bibliographic Details
Main Authors: Stéphanie Kaeser-Pebernard, Christine Vionnet, Muriel Mari, Devanarayanan Siva Sankar, Zehan Hu, Carole Roubaty, Esther Martínez-Martínez, Huiyuan Zhao, Miguel Spuch-Calvar, Alke Petri-Fink, Gregor Rainer, Florian Steinberg, Fulvio Reggiori, Jörn Dengjel
Format: Article
Language:English
Published: Nature Portfolio 2022-08-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-32487-7
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author Stéphanie Kaeser-Pebernard
Christine Vionnet
Muriel Mari
Devanarayanan Siva Sankar
Zehan Hu
Carole Roubaty
Esther Martínez-Martínez
Huiyuan Zhao
Miguel Spuch-Calvar
Alke Petri-Fink
Gregor Rainer
Florian Steinberg
Fulvio Reggiori
Jörn Dengjel
author_facet Stéphanie Kaeser-Pebernard
Christine Vionnet
Muriel Mari
Devanarayanan Siva Sankar
Zehan Hu
Carole Roubaty
Esther Martínez-Martínez
Huiyuan Zhao
Miguel Spuch-Calvar
Alke Petri-Fink
Gregor Rainer
Florian Steinberg
Fulvio Reggiori
Jörn Dengjel
author_sort Stéphanie Kaeser-Pebernard
collection DOAJ
description mTORC1 is a master regulator of cell growth with well-known functions in inhibiting autophagic vesicle formation. Here, the authors show that mTORC1 also affects Golgi architecture and vesicle secretion by phosphorylating the scaffold protein SCYL1.
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spelling doaj.art-47fafe05ef1d4bfc9dcefd8a49f743f92022-12-22T03:59:06ZengNature PortfolioNature Communications2041-17232022-08-0113112110.1038/s41467-022-32487-7mTORC1 controls Golgi architecture and vesicle secretion by phosphorylation of SCYL1Stéphanie Kaeser-Pebernard0Christine Vionnet1Muriel Mari2Devanarayanan Siva Sankar3Zehan Hu4Carole Roubaty5Esther Martínez-Martínez6Huiyuan Zhao7Miguel Spuch-Calvar8Alke Petri-Fink9Gregor Rainer10Florian Steinberg11Fulvio Reggiori12Jörn Dengjel13Department of Biology, University of FribourgDepartment of Biology, University of FribourgDepartment of Biomedical Sciences of Cells and Systems, University of Groningen, University Medical Center GroningenDepartment of Biology, University of FribourgDepartment of Biology, University of FribourgDepartment of Biology, University of FribourgDepartment of Biology, University of FribourgSection of Medicine, University of FribourgAdolf Merkle Institute, University of FribourgAdolf Merkle Institute, University of FribourgSection of Medicine, University of FribourgCenter for Biological Systems Analysis, University of FreiburgDepartment of Biomedical Sciences of Cells and Systems, University of Groningen, University Medical Center GroningenDepartment of Biology, University of FribourgmTORC1 is a master regulator of cell growth with well-known functions in inhibiting autophagic vesicle formation. Here, the authors show that mTORC1 also affects Golgi architecture and vesicle secretion by phosphorylating the scaffold protein SCYL1.https://doi.org/10.1038/s41467-022-32487-7
spellingShingle Stéphanie Kaeser-Pebernard
Christine Vionnet
Muriel Mari
Devanarayanan Siva Sankar
Zehan Hu
Carole Roubaty
Esther Martínez-Martínez
Huiyuan Zhao
Miguel Spuch-Calvar
Alke Petri-Fink
Gregor Rainer
Florian Steinberg
Fulvio Reggiori
Jörn Dengjel
mTORC1 controls Golgi architecture and vesicle secretion by phosphorylation of SCYL1
Nature Communications
title mTORC1 controls Golgi architecture and vesicle secretion by phosphorylation of SCYL1
title_full mTORC1 controls Golgi architecture and vesicle secretion by phosphorylation of SCYL1
title_fullStr mTORC1 controls Golgi architecture and vesicle secretion by phosphorylation of SCYL1
title_full_unstemmed mTORC1 controls Golgi architecture and vesicle secretion by phosphorylation of SCYL1
title_short mTORC1 controls Golgi architecture and vesicle secretion by phosphorylation of SCYL1
title_sort mtorc1 controls golgi architecture and vesicle secretion by phosphorylation of scyl1
url https://doi.org/10.1038/s41467-022-32487-7
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