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Muscle inactivation of mTOR causes metabolic and dystrophin defects leading to severe myopathy

Authors :
Risson, Valerie
Mazelin, Laetitia
Roceri, Mila
Sanchez, Herve
Moncollin, Vincent
Corneloup, Claudine
Richard-Bulteau, Helene
Vignaud, Alban
Baas, Dominique
Defour, Aurelia
Freyssenet, Damien
Tanti, Jean-Francois
Le-Marchand-Brustel, Yannick
Ferrier, Bernard
Conjard-Duplany, Agnes
Romanino, Klaas
Bauche, Stephanie
Hantai, Daniel
Mueller, Matthias
Kozma, Sara C.
Thomas, George
Ruegg, Markus A.
Ferry, Arnaud
Pende, Mario
Bigard, Xavier
Koulmann, Nathalie
Schaeffer, Laurent
Gangloff, Yann-Gael
Source :
The Journal of Cell Biology. Dec 14, 2009, Vol. 187 Issue 6, p859, 16 p.
Publication Year :
2009

Abstract

Mammalian target of rapamycin (mTOR) is a key regulator of cell growth that associates with raptor and rictor to form the mTOR complex 1 (mTORC1) and mTORC2, respectively. Raptor is required for oxidative muscle integrity, whereas rictor is dispensable. In this study, we show that muscle-specific inactivation of mTOR leads to severe myopathy, resulting in premature death, mTOR-deficient muscles display metabolic changes similar to those observed in muscles lacking raptor, including impaired oxidative metabolism, altered mitochondrial regulation, and glycogen accumulation associated with protein kinase B/Akt hyperactivation. In addition, mTOR-deficient muscles exhibit increased basal glucose uptake, whereas whole body glucose homeostasis is essentially maintained. Importantly, loss of mTOR exacerbates the myopathic features in both slow oxidative and fast glycolytic muscles. Moreover, mTOR but not raptor and rictor deficiency leads to reduced muscle dystrophin content. We provide evidence that mTOR controls dystrophin transcription in a cell-autonomous, rapamycin-resistant, and kinase-independent manner. Collectively, our results demonstrate that mTOR acts mainly via mTORC1, whereas regulation of dystrophin is raptor and rictor independent. /doi/ 10.1083/jcb.200903131

Details

Language :
English
ISSN :
00219525
Volume :
187
Issue :
6
Database :
Gale General OneFile
Journal :
The Journal of Cell Biology
Publication Type :
Academic Journal
Accession number :
edsgcl.215514271