review article | Q7318358 |
scholarly article | Q13442814 |
P50 | author | Mark Hargreaves | Q40191104 |
Sean Mcgee | Q42722945 | ||
P2093 | author name string | Mark Hargreaves | |
Sean L McGee | |||
P2860 | cites work | Peroxisome proliferator-activated receptor gamma coactivator 1 coactivators, energy homeostasis, and metabolism | Q28266830 |
The involvement of the ubiquitin proteasome system in human skeletal muscle remodelling and atrophy. | Q37320841 | ||
Lilly lecture 1987. The triumvirate: beta-cell, muscle, liver. A collusion responsible for NIDDM. | Q39648063 | ||
P433 | issue | 3 | |
P304 | page(s) | 392-396 | |
P577 | publication date | 2009-09-28 | |
P1433 | published in | Clinical and Experimental Pharmacology and Physiology | Q5133807 |
P1476 | title | Histone modifications and skeletal muscle metabolic gene expression | |
P478 | volume | 37 |
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Q33893826 | Developmental enhancement of adenylate kinase-AMPK metabolic signaling axis supports stem cell cardiac differentiation |
Q50877255 | Differentiated mTOR but not AMPK signaling after strength vs endurance exercise in training-accustomed individuals. |
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Q34183986 | Hepatic FoxO1 acetylation is involved in oleanolic acid-induced memory of glycemic control: novel findings from Study 2. |
Q37832964 | Histone deacetylase (HDAC) inhibition as a novel treatment for diabetes mellitus |
Q35780194 | Interferon gamma (IFN-γ) disrupts energy expenditure and metabolic homeostasis by suppressing SIRT1 transcription |
Q27002421 | Metabolic reprogramming as a novel regulator of skeletal muscle development and regeneration |
Q38683501 | Molecular Basis of Exercise-Induced Skeletal Muscle Mitochondrial Biogenesis: Historical Advances, Current Knowledge, and Future Challenges |
Q35094124 | Reversal of glucose intolerance in rat offspring exposed to ethanol before birth through reduction of nuclear skeletal muscle HDAC expression by the bile acid TUDCA |
Q35503840 | Selective repression of MEF2 activity by PKA-dependent proteolysis of HDAC4. |
Q97643860 | Short-chain fatty acids as potential regulators of skeletal muscle metabolism and function |
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