We have reported a novel functional co-operation among MyoD, myocyte enhancer factor-2 (MEF2), and the thyroid hormone receptor in a muscle-specific enhancer of the rat GLUT4 gene in muscle cells. Here, we demonstrate that the muscle-specific enhancer of the GLUT4 gene operates in skeletal muscle and is muscle fiber-dependent and innervation-independent. Under normal conditions, both in soleus and in extensor digitorum longus muscles, the activity of the enhancer required the integrity of the MEF2-binding site. Cancellation of the binding site of thyroid hormone receptor enhanced its activity, suggesting an inhibitory role. Muscle regeneration of the soleus and extensor digitorum longus muscles caused a marked induction of GLUT4 and stimula...
Crowther LM, Wang SCM, Eriksson NA, Myers SA, Murray LA, Muscat GEO. Chicken ovalbumin upstream prom...
It is known that the MyoD family members (MyoD, Myf5, myogenin, and MRF4) play a pivotal role in the...
Le muscle squelettique est un tissu dynamique ayant la capacité de réguler sa taille et son activité...
Diabetes is quickly reaching epidemic proportions, with 216 million people worldwide predicted to be...
Muscle cell differentiation caused a reduction of glucose transport, GLUT1 glucose transporter expre...
Denervation by sciatic nerve resection causes decreased muscle glucose transporter 4 (GLUT4) express...
AbstractThe myogenic regulatory factors, Mrf4 and Myf5, play a key role in skeletal muscle formation...
Thyroid hormones are major determinants of skeletal muscle differentiation in vivo. Triiodo-L-thyron...
Overexpression of GLUT4 in skeletal muscle enhances whole-body insulin action. Exercise increases GL...
Lima GA, Anhe GF, Giannocco G, Nunes MT, Correa-Giannella ML, Machado UF. Contractile activity per s...
Nuclear hormone receptors (NRs) are ligand activated DNA binding proteins that regulate genes involv...
Diabetes is characterized by reduced thyroid function and altered myogenesis after muscle injury. He...
International audienceSkeletal muscle is a dynamic tissue the size of which can be remodeled through...
Skeletal myoblasts have their origin early in embryogenesis within specific somites. Determined myob...
The myogenic regulatory factor MRF4 is highly expressed in adult skeletal muscle but its function is...
Crowther LM, Wang SCM, Eriksson NA, Myers SA, Murray LA, Muscat GEO. Chicken ovalbumin upstream prom...
It is known that the MyoD family members (MyoD, Myf5, myogenin, and MRF4) play a pivotal role in the...
Le muscle squelettique est un tissu dynamique ayant la capacité de réguler sa taille et son activité...
Diabetes is quickly reaching epidemic proportions, with 216 million people worldwide predicted to be...
Muscle cell differentiation caused a reduction of glucose transport, GLUT1 glucose transporter expre...
Denervation by sciatic nerve resection causes decreased muscle glucose transporter 4 (GLUT4) express...
AbstractThe myogenic regulatory factors, Mrf4 and Myf5, play a key role in skeletal muscle formation...
Thyroid hormones are major determinants of skeletal muscle differentiation in vivo. Triiodo-L-thyron...
Overexpression of GLUT4 in skeletal muscle enhances whole-body insulin action. Exercise increases GL...
Lima GA, Anhe GF, Giannocco G, Nunes MT, Correa-Giannella ML, Machado UF. Contractile activity per s...
Nuclear hormone receptors (NRs) are ligand activated DNA binding proteins that regulate genes involv...
Diabetes is characterized by reduced thyroid function and altered myogenesis after muscle injury. He...
International audienceSkeletal muscle is a dynamic tissue the size of which can be remodeled through...
Skeletal myoblasts have their origin early in embryogenesis within specific somites. Determined myob...
The myogenic regulatory factor MRF4 is highly expressed in adult skeletal muscle but its function is...
Crowther LM, Wang SCM, Eriksson NA, Myers SA, Murray LA, Muscat GEO. Chicken ovalbumin upstream prom...
It is known that the MyoD family members (MyoD, Myf5, myogenin, and MRF4) play a pivotal role in the...
Le muscle squelettique est un tissu dynamique ayant la capacité de réguler sa taille et son activité...