edoc

Dual roles of mTORC1-dependent activation of the ubiquitin-proteasome system in muscle proteostasis

Kaiser, Marco S. and Milan, Giulia and Ham, Daniel J. and Lin, Shuo and Oliveri, Filippo and Chojnowska, Kathrin and Tintignac, Lionel A. and Mittal, Nitish and Zimmerli, Christian E. and Glass, David J. and Zavolan, Mihaela and Rüegg, Markus A.. (2022) Dual roles of mTORC1-dependent activation of the ubiquitin-proteasome system in muscle proteostasis. Communications biology, 5 (1). p. 1141.

[img] PDF - Published Version
Available under License CC BY (Attribution).

6Mb

Official URL: https://edoc.unibas.ch/90174/

Downloads: Statistics Overview

Abstract

Muscle size is controlled by the PI3K-PKB/Akt-mTORC1-FoxO pathway, which integrates signals from growth factors, energy and amino acids to activate protein synthesis and inhibit protein breakdown. While mTORC1 activity is necessary for PKB/Akt-induced muscle hypertrophy, its constant activation alone induces muscle atrophy. Here we show that this paradox is based on mTORC1 activity promoting protein breakdown through the ubiquitin-proteasome system (UPS) by simultaneously inducing ubiquitin E3 ligase expression via feedback inhibition of PKB/Akt and proteasome biogenesis via Nuclear Factor Erythroid 2-Like 1 (Nrf1). Muscle growth was restored by reactivation of PKB/Akt, but not by Nrf1 knockdown, implicating ubiquitination as the limiting step. However, both PKB/Akt activation and proteasome depletion by Nrf1 knockdown led to an immediate disruption of proteome integrity with rapid accumulation of damaged material. These data highlight the physiological importance of mTORC1-mediated PKB/Akt inhibition and point to juxtaposed roles of the UPS in atrophy and proteome integrity.
Faculties and Departments:05 Faculty of Science > Departement Biozentrum > Computational & Systems Biology > Bioinformatics (Zavolan)
05 Faculty of Science > Departement Biozentrum > Neurobiology > Pharmacology/Neurobiology (Rüegg)
UniBasel Contributors:Rüegg, Markus A. and Zavolan, Mihaela and Mittal, Nitish and Kaiser, Marco and Milan, Giulia and Ham, Daniel Jacob and Lin, Shuo and Oliveri, Filippo and Chojnowska, Kathrin and Tintignac, Lionel
Item Type:Article, refereed
Article Subtype:Research Article
ISSN:2399-3642
Note:Publication type according to Uni Basel Research Database: Journal article
Language:English
Identification Number:
edoc DOI:
Last Modified:08 Nov 2022 10:48
Deposited On:08 Nov 2022 10:48

Repository Staff Only: item control page