AbstractMyoD is a master regulator of myogenesis with a potent ability to redirect the cell fate of even terminally differentiated cells. Hence, enhancing the activity of MyoD is an important step to maximising its potential utility for in vitro disease modelling and cell replacement therapies. We have previously shown that the reprogramming activity of several neurogenic bHLH proteins can be substantially enhanced by inhibiting their multi-site phosphorylation by proline-directed kinases. Here we have used Xenopus embryos as an in vivo developmental and reprogramming system to investigate the multi-site phospho-regulation of MyoD during muscle differentiation. We show that, in addition to modification of a previously well-characterised sit...
I have cloned cDNAs corresponding to two distinct genes, Xlmf1 and Xlmf25, which encode skeletal mus...
Transient MyoD overexpression in concert with small molecule treatment reprograms mouse fibroblasts ...
AbstractThe p38 MAPK signaling pathway is essential for skeletal muscle differentiation in tissue cu...
MyoD is a master regulator of myogenesis with a potent ability to redirect the cell fate of even ter...
AbstractMyoD is a master regulator of myogenesis with a potent ability to redirect the cell fate of ...
The transcriptional activator MyoD serves as a master controller of myogenesis. Often in partnership...
AbstractRecently we have shown that Mos could activate myogenic differentiation by promoting heterod...
Committed skeletal muscle myoblasts undergo terminal differentiation when shifted from a high-mitoge...
SummaryMyoD and NeuroD2, master regulators of myogenesis and neurogenesis, bind to a “shared” E-box ...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
Myogenic regulatory factors (MRFs) are known to have essential roles in both the establishment and d...
I have cloned cDNAs corresponding to two distinct genes, Xlmf1 and Xlmf25, which encode skeletal mus...
AbstractInXenopus,the activation of the myogenic determination factors MyoD and Myf-5 in the muscle-...
AbstractIn amphibian development, muscle is specified in the dorsal lateral marginal zone (DLMZ) of ...
AbstractIn order to identify early transcriptional targets of MyoD prior to skeletal muscle differen...
I have cloned cDNAs corresponding to two distinct genes, Xlmf1 and Xlmf25, which encode skeletal mus...
Transient MyoD overexpression in concert with small molecule treatment reprograms mouse fibroblasts ...
AbstractThe p38 MAPK signaling pathway is essential for skeletal muscle differentiation in tissue cu...
MyoD is a master regulator of myogenesis with a potent ability to redirect the cell fate of even ter...
AbstractMyoD is a master regulator of myogenesis with a potent ability to redirect the cell fate of ...
The transcriptional activator MyoD serves as a master controller of myogenesis. Often in partnership...
AbstractRecently we have shown that Mos could activate myogenic differentiation by promoting heterod...
Committed skeletal muscle myoblasts undergo terminal differentiation when shifted from a high-mitoge...
SummaryMyoD and NeuroD2, master regulators of myogenesis and neurogenesis, bind to a “shared” E-box ...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
Myogenic regulatory factors (MRFs) are known to have essential roles in both the establishment and d...
I have cloned cDNAs corresponding to two distinct genes, Xlmf1 and Xlmf25, which encode skeletal mus...
AbstractInXenopus,the activation of the myogenic determination factors MyoD and Myf-5 in the muscle-...
AbstractIn amphibian development, muscle is specified in the dorsal lateral marginal zone (DLMZ) of ...
AbstractIn order to identify early transcriptional targets of MyoD prior to skeletal muscle differen...
I have cloned cDNAs corresponding to two distinct genes, Xlmf1 and Xlmf25, which encode skeletal mus...
Transient MyoD overexpression in concert with small molecule treatment reprograms mouse fibroblasts ...
AbstractThe p38 MAPK signaling pathway is essential for skeletal muscle differentiation in tissue cu...