SummaryMyoD and NeuroD2, master regulators of myogenesis and neurogenesis, bind to a “shared” E-box sequence (CAGCTG) and a “private” sequence (CAGGTG or CAGATG, respectively). To determine whether private-site recognition is sufficient to confer lineage specification, we generated a MyoD mutant with the DNA-binding specificity of NeuroD2. This chimeric mutant gained binding to NeuroD2 private sites but maintained binding to a subset of MyoD-specific sites, activating part of both the muscle and neuronal programs. Sequence analysis revealed an enrichment for PBX/MEIS motifs at the subset of MyoD-specific sites bound by the chimera, and point mutations that prevent MyoD interaction with PBX/MEIS converted the chimera to a pure neurogenic fac...
AbstractDuring embryogenesis, cells from the ventral and dorsal parts of the somites give rise to sc...
The activation of muscle-specific gene expression requires the coordinated action of muscle regulato...
SummaryMyoD is a key regulator of skeletal myogenesis that directs contractile protein synthesis, bu...
SummaryMyoD and NeuroD2, master regulators of myogenesis and neurogenesis, bind to a “shared” E-box ...
MyoD and NeuroD2, master regulators of myogenesis and neurogenesis, bind to a “shared” E-box sequenc...
SummaryThe regulatory networks of differentiation programs have been partly characterized; however, ...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
AbstractMyoD is a master regulator of myogenesis with a potent ability to redirect the cell fate of ...
SummaryMost transcription factor families contain highly related paralogs generated by gene duplicat...
The activation of muscle-specific gene expression requires the coordinated action of muscle regulato...
There is growing recognition that animal transcription factors bind in vivo to far more genomic regi...
Myogenesis in skeletal muscle is a cascade of developmental events whose initiation involves the Myo...
AbstractThe myogenic regulatory family of basic helix-loop-helix transcription factors, including My...
The activation of muscle-specific gene expression requires the coordinated action of muscle regulato...
AbstractThe expression of MyoD can activate muscle specific genes and myogenic differentiation in ma...
AbstractDuring embryogenesis, cells from the ventral and dorsal parts of the somites give rise to sc...
The activation of muscle-specific gene expression requires the coordinated action of muscle regulato...
SummaryMyoD is a key regulator of skeletal myogenesis that directs contractile protein synthesis, bu...
SummaryMyoD and NeuroD2, master regulators of myogenesis and neurogenesis, bind to a “shared” E-box ...
MyoD and NeuroD2, master regulators of myogenesis and neurogenesis, bind to a “shared” E-box sequenc...
SummaryThe regulatory networks of differentiation programs have been partly characterized; however, ...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
AbstractMyoD is a master regulator of myogenesis with a potent ability to redirect the cell fate of ...
SummaryMost transcription factor families contain highly related paralogs generated by gene duplicat...
The activation of muscle-specific gene expression requires the coordinated action of muscle regulato...
There is growing recognition that animal transcription factors bind in vivo to far more genomic regi...
Myogenesis in skeletal muscle is a cascade of developmental events whose initiation involves the Myo...
AbstractThe myogenic regulatory family of basic helix-loop-helix transcription factors, including My...
The activation of muscle-specific gene expression requires the coordinated action of muscle regulato...
AbstractThe expression of MyoD can activate muscle specific genes and myogenic differentiation in ma...
AbstractDuring embryogenesis, cells from the ventral and dorsal parts of the somites give rise to sc...
The activation of muscle-specific gene expression requires the coordinated action of muscle regulato...
SummaryMyoD is a key regulator of skeletal myogenesis that directs contractile protein synthesis, bu...