MRF4 protein expression in regenerating rat muscle
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Summary
The results demonstrate that MRF4 protein expression in regenerated fibers is restricted to the time around and after fusion, and suggests that the role of MRF 4 during regeneration is distinct from myf-5, MyoD, and myogenin.
- Type
- article
- Published
- 2004-01-01
- Cited by
- 42
- References
- 34
- OpenAlex
- https://openalex.org/W79291003
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9091302
Keywords
MyoD, Myogenin, Myogenesis, Myogenic regulatory factors, Biology
References
- Temporal expression of myogenic regulatory genes during activation, proliferation, and differentiation of rat skeletal muscle satellite cells
- Single-cell analysis of regulatory gene expression in quiescent and activated mouse skeletal muscle satellite cells.
- Inactivation of Myf‐6 and Myf‐5 genes in mice leads to alterations in skeletal muscle development.
- Satellite cell proliferation and the expression of myogenin and desmin in regenerating skeletal muscle: evidence for two different populations of satellite cells.
- Overlapping functions of the myogenic bHLH genes MRF4 and MyoD revealed in double mutant mice.
- The molecular regulation of myogenesis
- MyoD protein accumulates in satellite cells and is neurally regulated in regenerating myotubes and skeletal muscle fibers
- Immunocytochemistry of M‐cadherin in mature and regenerating rat muscle
- Reduced Differentiation Potential of Primary MyoD−/− Myogenic Cells Derived from Adult Skeletal Muscle
- Expression pattern of M‐cadherin in normal, denervated, and regenerating mouse muscles
- Failure of Myf5 to support myogenic differentiation without myogenin, MyoD, and MRF4.
- MyoD and myogenin are coexpressed in regenerating skeletal muscle of the mouse
- Proliferation of muscle satellite cells on intact myofibers in culture.
- Expression of M‐cadherin protein in myogenic cells during prenatal mouse development and differentiation of embryonic stem cells in culture
- The MyoD family of myogenic factors is regulated by electrical activity: isolation and characterization of a mouse Myf-5 cDNA.
- Localization of myogenin, c-fos, c-jun, and muscle-specific gene mRNAs in regenerating rat skeletal muscle
- Identification of skeletal muscle precursor cells in vivo by use of MyoD1 and myogenin probes
- Colocalization of bFGF and the myogenic regulatory gene myogenin in dystrophic mdx muscle precursors and young myotubes in vivo.
- Jun, Fos, MyoD1, and Myogenin proteins are increased in skeletal muscle fiber nuclei after denervation
- Denervation induces a rapid nuclear accumulation of MRF4 in mature myofibers
Cited by
- Trichinella spiralis: nurse cell formation with emphasis on analogy to muscle cell repair
- Étude de la régulation post-transcriptionnelle de l’expression des gènes par la protéine de liaison à l’ARN IMP-2 au cours de la myogenèse
- Expression profile of Wnt isoforms during differentiation of aging C2C12 myoblast cells.
- Differential effects of TNfα on satellite cell differentiation
- A fast fiber enhancer exists in the muscle regulatory factor 4 gene promoter.
- Regeneration of transgenic skeletal muscles with altered timing of expression of the basic helix-loop-helix muscle regulatory factor MRF4.
- A role for the myogenic determination gene Myf5 in adult regenerative myogenesis.
- A selective role for MRF4 in innervated adult skeletal muscle: Na(V) 1.4 Na+ channel expression is reduced in MRF4-null mice.
- Effects of one bout of endurance exercise on the expression of myogenin in human quadriceps muscle
- Cellular and molecular regulation of muscle regeneration.
- Molecular cloning of the duck MyoG and MRF4 genes coding region sequence and their differential expression patterns in the breast and leg muscle during fetal development
- Regulation of skeletal muscle differentiation in fibroblasts by exogenous MyoD gene in vitro and in vivo
- Expression of MRF4 protein in adult and in regenerating muscles in Xenopus
- Differential Regulation of the Muscle-specific GLUT4 Enhancer in Regenerating and Adult Skeletal Muscle*
- Adipogenic and myogenic gene expression in rotator cuff muscle of the sheep after tendon tear
- Skeletal muscle repair after micro-damage : effect of ice therapy on satellite cell activation
- The Expression Profile of Myogenic Transcription Factors in Satellite Cells from Denervated Rat Muscle
- Aberrant neuromuscular junctions and delayed terminal muscle fiber maturation in alpha-dystroglycanopathies.
- Satellite Cell Proliferation in Response to a Chronic Laboratory- Controlled Uphill vs. Downhill Interval Training Intervention
- Mechanisms regulating GLUT4 glucose transporter expression and glucose transport in skeletal muscle.
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