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Exercise physiology / Tissues / DNA / Cellular respiration / Mitochondrion / Skeletal striated muscle / Mitochondrial disease / FGF21 / Mitochondrial DNA / Anatomy / Biology / Muscular system


Muscle-specific Drp1 overexpression impairs skeletal muscle growth via translational attenuation
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Document Date: 2015-02-26 08:34:00


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University of Milano-Bicocca / San Raffaele Scientific Institute / L. Sacco University Hospital / E. Medea Scientific Institute / Ricerche Institute of Neuroscience / /

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fission machinery / postnatal mitochondrial network / autophagy-lysosome systems / satellite cells / energy imbalance / positive satellite cells / skeletal muscle satellite cells / energy balance / mitochondrial network / reduced food intake / satellite cells function / /

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optic atrophy / mitochondrial respiratory chain deficiencies / inhibitory upstream ORF / cachectic cancer / intestinal inflammation / severe mitochondrial respiratory chain dysfunction / latent dysfunction / obesity / protein synthesis depression / WT depression / mitochondrial diseases / chronic undernutrition / myopathies / muscle atrophy / mitochondrial dysfunction / insulin resistance / cancer / Disease / dominant optic atrophy / contraction / VI deficiency / Drp1 transgenic mice Drp1 ORF / neurodegenerative diseases / deficiency / depression / inflammatory / /

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University of Milano-Bicocca / Centre National / Ecole Normale Supérieure / E. Medea Scientific Institute / Santiago MC / San Raffaele Scientific Institute / Department of Health Sciences / Institute of Neuroscience / L. Sacco University Hospital / Administration of the ATP / Division of Genetics and Cell Biology / Department of Clinical and Biomedical Sciences / /

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Maurizio Moggio / Stephan Clavel / Michela Ripolone / Cell Death / Fabrice Mure / Paola Zordan / Valentina Conti / /

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