Differential epigenetic modifications of histones at the myosin heavy chain genes in fast and slow skeletal muscle fibers and in response to muscle unloading
about
Mitochondrial and skeletal muscle health with advancing ageAlterations in muscle mass and contractile phenotype in response to unloading models: role of transcriptional/pretranslational mechanismsResearch in the exercise sciences: where we are and where do we go from here--Part IIEpigenetics in sports.Cardiac myosin heavy chain gene regulation by thyroid hormone involves altered histone modificationsGenome-Wide H3K4me3 Analysis in Angus Cattle with Divergent Tenderness.DNA methylation assessment from human slow- and fast-twitch skeletal muscle fibers.Epigenetic regulation of muscle phenotype and adaptation: a potential role in COPD muscle dysfunction.Epigenetic influence of KAT6B and HDAC4 in the development of skeletal malocclusionCalcineurin plays a modulatory role in loading-induced regulation of type I myosin heavy chain gene expression in slow skeletal muscle.Epigenetic control of skeletal muscle fibre type.Histone modifications and exercise adaptations.Characterization and regulation of mechanical loading-induced compensatory muscle hypertrophy.From Slow to Fast: Hypogravity-Induced Remodeling of Muscle Fiber Myosin Phenotype.Agonist monoclonal antibodies against HGF receptor protect cardiac muscle cells from apoptosis.Differences in histone modifications between slow- and fast-twitch muscle of adult rats and following overload, denervation, or valproic acid administration.Novel epigenetic regulation of skeletal muscle myosin heavy chain genes. Focus on "Differential epigenetic modifications of histones at the myosin heavy chain genes in fast and slow skeletal muscle fibers and in response to muscle unloading".Isoform composition and gene expression of thick and thin filament proteins in striated muscles of mice after 30-day space flight.Exercise-induced histone modifications in human skeletal muscle.Regulation of contractile proteins and protein translational signaling in disused muscle.Rapid decline in MyHC I(β) mRNA expression in rat soleus during hindlimb unloading is associated with AMPK dephosphorylation.Sumoylated α-skeletal muscle actin in the skeletal muscle of adult rats.Trichostatin A, a histone deacetylase inhibitor, modulates unloaded-induced skeletal muscle atrophy.Reduced expression of MyHC slow isoform in rat soleus during unloading is accompanied by alterations of endogenous inhibitors of calcineurin/NFAT signaling pathway.
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P2860
Differential epigenetic modifications of histones at the myosin heavy chain genes in fast and slow skeletal muscle fibers and in response to muscle unloading
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 15 April 2009
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Differential epigenetic modifi ...... n response to muscle unloading
@en
Differential epigenetic modifi ...... response to muscle unloading.
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type
label
Differential epigenetic modifi ...... n response to muscle unloading
@en
Differential epigenetic modifi ...... response to muscle unloading.
@nl
prefLabel
Differential epigenetic modifi ...... n response to muscle unloading
@en
Differential epigenetic modifi ...... response to muscle unloading.
@nl
P2093
P2860
P1476
Differential epigenetic modifi ...... n response to muscle unloading
@en
P2093
Carola Wright
Clay E Pandorf
Fadia Haddad
Kenneth M Baldwin
Paul W Bodell
P2860
P356
10.1152/AJPCELL.00075.2009
P577
2009-04-15T00:00:00Z