Pages that link to "Q36255817"
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The following pages link to Reduced differentiation potential of primary MyoD-/- myogenic cells derived from adult skeletal muscle (Q36255817):
Displaying 50 items.
- Regulation of scleraxis function by interaction with the bHLH protein E47 (Q22253947) (← links)
- Sox15 is required for skeletal muscle regeneration (Q24304057) (← links)
- The cell adhesion molecule M-cadherin is not essential for muscle development and regeneration (Q24537537) (← links)
- IL-4R drives dedifferentiation, mitogenesis, and metastasis in rhabdomyosarcoma (Q24601302) (← links)
- Muscle regeneration and myogenic differentiation defects in mice lacking TIS7 (Q24602530) (← links)
- microRNA-1 and microRNA-206 regulate skeletal muscle satellite cell proliferation and differentiation by repressing Pax7 (Q24615529) (← links)
- Myogenic specification of side population cells in skeletal muscle (Q24672806) (← links)
- Netrins and neogenin promote myotube formation (Q24676178) (← links)
- Transducer of regulated CREB-binding proteins (TORCs) induce PGC-1alpha transcription and mitochondrial biogenesis in muscle cells (Q24676703) (← links)
- Pax7 is necessary and sufficient for the myogenic specification of CD45+:Sca1+ stem cells from injured muscle (Q24796796) (← links)
- Skeletal muscle stem cells (Q24801042) (← links)
- Effects of Nandrolone in the Counteraction of Skeletal Muscle Atrophy in a Mouse Model of Muscle Disuse: Molecular Biology and Functional Evaluation (Q27304606) (← links)
- Fibroblast growth factor inducible 14 (Fn14) is required for the expression of myogenic regulatory factors and differentiation of myoblasts into myotubes. Evidence for TWEAK-independent functions of Fn14 during myogenesis (Q28294844) (← links)
- Overexpression of Akt1 enhances adipogenesis and leads to lipoma formation in zebrafish (Q28483822) (← links)
- Transcriptomic and network component analysis of glycerol kinase in skeletal muscle using a mouse model of glycerol kinase deficiency (Q28507112) (← links)
- Stress-induced C/EBP homology protein (CHOP) represses MyoD transcription to delay myoblast differentiation (Q28510649) (← links)
- Megf10 regulates the progression of the satellite cell myogenic program (Q28511899) (← links)
- Lamin A/C and emerin are critical for skeletal muscle satellite cell differentiation (Q28511959) (← links)
- Down-regulation of MyoD by calpain 3 promotes generation of reserve cells in C2C12 myoblasts (Q28512068) (← links)
- Metabolic control of muscle mitochondrial function and fatty acid oxidation through SIRT1/PGC-1alpha (Q28513388) (← links)
- Down-regulation of an ankyrin repeat-containing protein, V-1, during skeletal muscle differentiation and its re-expression in the regenerative process of muscular dystrophy (Q28564572) (← links)
- Antisense inhibition of myoD expression in regenerating rat soleus muscle is followed by an increase in the mRNA levels of myoD, myf-5 and myogenin and by a retarded regeneration (Q28567650) (← links)
- Regeneration of transgenic skeletal muscles with altered timing of expression of the basic helix-loop-helix muscle regulatory factor MRF4 (Q28573663) (← links)
- Acetylation is important for MyoD function in adult mice (Q28582566) (← links)
- An initial blueprint for myogenic differentiation (Q28588060) (← links)
- Xin, an actin binding protein, is expressed within muscle satellite cells and newly regenerated skeletal muscle fibers (Q28589167) (← links)
- Pax7 is required for the specification of myogenic satellite cells (Q28593927) (← links)
- Separating myoblast differentiation from muscle cell fusion using IGF-I and the p38 MAP kinase inhibitor SB202190. (Q30666846) (← links)
- Purification and cell-surface marker characterization of quiescent satellite cells from murine skeletal muscle by a novel monoclonal antibody. (Q33203013) (← links)
- Pax7 activates myogenic genes by recruitment of a histone methyltransferase complex. (Q33309162) (← links)
- MyoD- and nerve-dependent maintenance of MyoD expression in mature muscle fibres acts through the DRR/PRR element (Q33316197) (← links)
- The atypical Rac activator Dock180 (Dock1) regulates myoblast fusion in vivo (Q33372285) (← links)
- A home away from home: challenges and opportunities in engineering in vitro muscle satellite cell niches (Q33571203) (← links)
- p38-{gamma}-dependent gene silencing restricts entry into the myogenic differentiation program (Q33589771) (← links)
- Activation of Cdc6 by MyoD is associated with the expansion of quiescent myogenic satellite cells (Q33616461) (← links)
- Transforming growth factor-beta-activated kinase 1 is an essential regulator of myogenic differentiation (Q33673668) (← links)
- Satellite cell dysfunction and impaired IGF-1 signaling cause CKD-induced muscle atrophy (Q33702390) (← links)
- Loss of MyoD Promotes Fate Transdifferentiation of Myoblasts Into Brown Adipocytes. (Q33809481) (← links)
- Satellite cells and the muscle stem cell niche (Q33816665) (← links)
- The molecular regulation of myogenesis (Q33873253) (← links)
- Expression of miR-1, miR-133a, miR-133b and miR-206 increases during development of human skeletal muscle. (Q33924659) (← links)
- The role of stem cells in skeletal and cardiac muscle repair (Q34124836) (← links)
- In vitro indeterminate teleost myogenesis appears to be dependent on Pax3 (Q34138165) (← links)
- Looking back to the embryo: defining transcriptional networks in adult myogenesis. (Q34210854) (← links)
- MyoD regulates apoptosis of myoblasts through microRNA-mediated down-regulation of Pax3 (Q34218839) (← links)
- Mouse Pop1 is required for muscle regeneration in adult skeletal muscle (Q34302313) (← links)
- Increased angiogenesis and improved left ventricular function after transplantation of myoblasts lacking the MyoD gene into infarcted myocardium (Q34358919) (← links)
- The potential of muscle stem cells (Q34434476) (← links)
- Muscle side population cells from dystrophic or injured muscle adopt a fibro-adipogenic fate (Q34555903) (← links)
- Novel TAZ modulators enhance myogenic differentiation and muscle regeneration (Q34571391) (← links)