Myogenic terminal differentiation is a well-orchestrated process starting with permanent cell cycle exit followed by muscle-specific genetic program activation. Individual SWI/SNF components have been involved in muscle differentiation. Here, we show that the master myogenic differentiation factor MyoD interacts with more than one SWI/SNF subunit, including the catalytic subunit BRG1, BAF53a and the tumor suppressor BAF47/INI1. Downregulation of each of these SWI/SNF subunits inhibits skeletal muscle terminal differentiation but, interestingly, at different differentiation steps and extents. BAF53a downregulation inhibits myotube formation but not the expression of early muscle-specific genes. BRG1 or BAF47 downregulation disrupt both proli...
SummaryThe transition from proliferating precursor cells to post-mitotic differentiated cells is cru...
Myogenin is required not for the initiation of myogenesis but instead for skeletal muscle formation ...
Skeletal muscle differentiation induces changes in the epigenome of myoblasts as they proceed toward...
<div><p>Myogenic terminal differentiation is a well-orchestrated process starting with permanent cel...
Myogenic terminal differentiation is a well-orchestrated process starting with permanent cell cycle ...
The myogenic basic helix-loop-helix family of transcription factors, MyoD, Myf5, myogenin, and MRF4,...
Although the two catalytic subunits of the SWI/SNF chromatin-remodeling complex—Brahma (Brm) and Brg...
Although the two catalytic subunits of the SWI/SNF chromatin-remodeling complex—Brahma (Brm) and Brg...
Mammalian SWI/SNF complexes are ATP-dependent chromatin remodeling enzymes that have been implicated...
Cell cycle arrest is critical for muscle differentiation, and the two processes are closely coordina...
During skeletal myogenesis, genomic reprogramming toward terminal differentiation is achieved by rec...
During skeletal myogenesis, genomic reprogramming toward terminal differentiation is achieved by rec...
Skeletal muscle differentiation relies on the coordinated activation and repression of specific subs...
<p><b>A.</b> C2C12 myoblasts were transfected with control, BRG1, BAF53a or BAF47 siRNAs. Immunofluo...
Brg1 (Brahma-related gene 1) is a catalytic component of the evolutionarily conserved mammalian SWI/...
SummaryThe transition from proliferating precursor cells to post-mitotic differentiated cells is cru...
Myogenin is required not for the initiation of myogenesis but instead for skeletal muscle formation ...
Skeletal muscle differentiation induces changes in the epigenome of myoblasts as they proceed toward...
<div><p>Myogenic terminal differentiation is a well-orchestrated process starting with permanent cel...
Myogenic terminal differentiation is a well-orchestrated process starting with permanent cell cycle ...
The myogenic basic helix-loop-helix family of transcription factors, MyoD, Myf5, myogenin, and MRF4,...
Although the two catalytic subunits of the SWI/SNF chromatin-remodeling complex—Brahma (Brm) and Brg...
Although the two catalytic subunits of the SWI/SNF chromatin-remodeling complex—Brahma (Brm) and Brg...
Mammalian SWI/SNF complexes are ATP-dependent chromatin remodeling enzymes that have been implicated...
Cell cycle arrest is critical for muscle differentiation, and the two processes are closely coordina...
During skeletal myogenesis, genomic reprogramming toward terminal differentiation is achieved by rec...
During skeletal myogenesis, genomic reprogramming toward terminal differentiation is achieved by rec...
Skeletal muscle differentiation relies on the coordinated activation and repression of specific subs...
<p><b>A.</b> C2C12 myoblasts were transfected with control, BRG1, BAF53a or BAF47 siRNAs. Immunofluo...
Brg1 (Brahma-related gene 1) is a catalytic component of the evolutionarily conserved mammalian SWI/...
SummaryThe transition from proliferating precursor cells to post-mitotic differentiated cells is cru...
Myogenin is required not for the initiation of myogenesis but instead for skeletal muscle formation ...
Skeletal muscle differentiation induces changes in the epigenome of myoblasts as they proceed toward...