The neuromuscular junction is a focal point of mTORC1 signaling in sarcopenia

Author:

Ham Daniel J.ORCID,Börsch Anastasiya,Lin Shuo,Thürkauf Marco,Weihrauch Martin,Reinhard Judith R.,Delezie Julien,Battilana Fabienne,Wang Xueyong,Kaiser Marco S.ORCID,Guridi Maitea,Sinnreich Michael,Rich Mark M.ORCID,Mittal Nitish,Tintignac Lionel A.,Handschin ChristophORCID,Zavolan MihaelaORCID,Rüegg Markus A.ORCID

Abstract

AbstractWith human median lifespan extending into the 80s in many developed countries, the societal burden of age-related muscle loss (sarcopenia) is increasing. mTORC1 promotes skeletal muscle hypertrophy, but also drives organismal aging. Here, we address the question of whether mTORC1 activation or suppression is beneficial for skeletal muscle aging. We demonstrate that chronic mTORC1 inhibition with rapamycin is overwhelmingly, but not entirely, positive for aging mouse skeletal muscle, while genetic, muscle fiber-specific activation of mTORC1 is sufficient to induce molecular signatures of sarcopenia. Through integration of comprehensive physiological and extensive gene expression profiling in young and old mice, and following genetic activation or pharmacological inhibition of mTORC1, we establish the phenotypically-backed, mTORC1-focused, multi-muscle gene expression atlas, SarcoAtlas (https://sarcoatlas.scicore.unibas.ch/), as a user-friendly gene discovery tool. We uncover inter-muscle divergence in the primary drivers of sarcopenia and identify the neuromuscular junction as a focal point of mTORC1-driven muscle aging.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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