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James G Ryall

Showing results (41-50 of 53) with videos related to

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Journal of Neuroscience Research|February 14, 2015
Silent information regulator 1 modulator resveratrol increases brain lactate production and inhibits mitochondrial metabolism, whereas SRT1720 increases oxidative metabolismBenjamin D Rowlands, Chew Ling Lau, James G Ryall, et al.
Genes & Development|April 19, 2011
Polycomb EZH2 controls self-renewal and safeguards the transcriptional identity of skeletal muscle stem cellsAster H Juan, Assia Derfoul, Xuesong Feng, et al.
Cell Stem Cell|January 21, 2015
The NAD(+)-dependent SIRT1 deacetylase translates a metabolic switch into regulatory epigenetics in skeletal muscle stem cellsJames G Ryall, Stefania Dell'Orso, Assia Derfoul, et al.
Biology Open|July 2, 2020
HSP70 drives myoblast fusion during C2C12 myogenic differentiationSavant S Thakur, Kristy Swiderski, Victoria L Chhen, et al.
Plos One|July 8, 2014
Functional β-adrenoceptors are important for early muscle regeneration in mice through effects on myoblast proliferation and differentiationJarrod E Church, Jennifer Trieu, Radhika Sheorey, et al.
JCI Insight|May 17, 2016
Integrated expression analysis of muscle hypertrophy identifies <i>Asb2</i> as a negative regulator of muscle massJonathan R Davey, Kevin I Watt, Benjamin L Parker, et al.
The American Journal of Pathology|April 6, 2010
Antibody-directed myostatin inhibition improves diaphragm pathology in young but not adult dystrophic mdx miceKate T Murphy, James G Ryall, Sarah M Snell, et al.
Cellular and Molecular Life Sciences : CMLS|January 4, 2013
A novel AMPK-dependent FoxO3A-SIRT3 intramitochondrial complex sensing glucose levelsAlessia Peserico, Fulvio Chiacchiera, Valentina Grossi, et al.
The Journal of Physiology|October 11, 2008
AMPK-independent pathways regulate skeletal muscle fatty acid oxidationNicolas Dzamko, Jonathan D Schertzer, James G Ryall, et al.
Molecular Metabolism|December 28, 2020
Metabolic remodeling of dystrophic skeletal muscle reveals biological roles for dystrophin and utrophin in adaptation and plasticityJustin P Hardee, Karen J B Martins, Paula M Miotto, et al.
Pageof 6

Showing results (41-50 of 53) with videos related to

Sort By:
Pageof 6
Journal of Neuroscience Research|February 14, 2015
Silent information regulator 1 modulator resveratrol increases brain lactate production and inhibits mitochondrial metabolism, whereas SRT1720 increases oxidative metabolismBenjamin D Rowlands, Chew Ling Lau, James G Ryall, et al.
Genes & Development|April 19, 2011
Polycomb EZH2 controls self-renewal and safeguards the transcriptional identity of skeletal muscle stem cellsAster H Juan, Assia Derfoul, Xuesong Feng, et al.
Cell Stem Cell|January 21, 2015
The NAD(+)-dependent SIRT1 deacetylase translates a metabolic switch into regulatory epigenetics in skeletal muscle stem cellsJames G Ryall, Stefania Dell'Orso, Assia Derfoul, et al.
Biology Open|July 2, 2020
HSP70 drives myoblast fusion during C2C12 myogenic differentiationSavant S Thakur, Kristy Swiderski, Victoria L Chhen, et al.
Plos One|July 8, 2014
Functional β-adrenoceptors are important for early muscle regeneration in mice through effects on myoblast proliferation and differentiationJarrod E Church, Jennifer Trieu, Radhika Sheorey, et al.
JCI Insight|May 17, 2016
Integrated expression analysis of muscle hypertrophy identifies <i>Asb2</i> as a negative regulator of muscle massJonathan R Davey, Kevin I Watt, Benjamin L Parker, et al.
The American Journal of Pathology|April 6, 2010
Antibody-directed myostatin inhibition improves diaphragm pathology in young but not adult dystrophic mdx miceKate T Murphy, James G Ryall, Sarah M Snell, et al.
Cellular and Molecular Life Sciences : CMLS|January 4, 2013
A novel AMPK-dependent FoxO3A-SIRT3 intramitochondrial complex sensing glucose levelsAlessia Peserico, Fulvio Chiacchiera, Valentina Grossi, et al.
The Journal of Physiology|October 11, 2008
AMPK-independent pathways regulate skeletal muscle fatty acid oxidationNicolas Dzamko, Jonathan D Schertzer, James G Ryall, et al.
Molecular Metabolism|December 28, 2020
Metabolic remodeling of dystrophic skeletal muscle reveals biological roles for dystrophin and utrophin in adaptation and plasticityJustin P Hardee, Karen J B Martins, Paula M Miotto, et al.
Pageof 6