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Publication : NCoR1 is a conserved physiological modulator of muscle mass and oxidative function.

First Author  Yamamoto H Year  2011
Journal  Cell Volume  147
Issue  4 Pages  827-39
PubMed ID  22078881 Mgi Jnum  J:178827
Mgi Id  MGI:5300393 Doi  10.1016/j.cell.2011.10.017
Citation  Yamamoto H, et al. (2011) NCoR1 is a conserved physiological modulator of muscle mass and oxidative function. Cell 147(4):827-39
abstractText  Transcriptional coregulators control the activity of many transcription factors and are thought to have wide-ranging effects on gene expression patterns. We show here that muscle-specific loss of nuclear receptor corepressor 1 (NCoR1) in mice leads to enhanced exercise endurance due to an increase of both muscle mass and of mitochondrial number and activity. The activation of selected transcription factors that control muscle function, such as MEF2, PPARbeta/delta, and ERRs, underpins these phenotypic alterations. NCoR1 levels are decreased in conditions that require fat oxidation, resetting transcriptional programs to boost oxidative metabolism. Knockdown of gei-8, the sole C. elegans NCoR homolog, also robustly increased muscle mitochondria and respiration, suggesting conservation of NCoR1 function. Collectively, our data suggest that NCoR1 plays an adaptive role in muscle physiology and that interference with NCoR1 action could be used to improve muscle function.
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