The Myocyte Enhancer Factor-2, or MEF2, transcription factor family is necessary for the differentiation and regeneration of both skeletal and cardiac muscle tissue. The transcription factors in this family are responsible for the activation of many muscle specific growth factor-induced and differentiation genes. There are four individual isoforms of MEF2; MEF2A, -B, -C, and –D, and the roles of these individual transcription factors are not completely understood. Knockdowns of these individual isoforms revealed that a MEF2A knockdown mouse model displays severe myofibrillar defects in cardiac muscle. This knockdown also has shown that MEF2A is required for myogenesis in vitro, where the other 3 isoforms, -B, -C, and –D, are not necessar...
Proper formation of the mammalian heart requires precise spatiotemporal transcriptional regulation o...
Myocyte enhancer factor 2A (MEF2A) is widely distributed in various tissues or organs and plays cruc...
microRNAs (miRNAs) are 21–23-nucleotide non-coding RNAs. It has become more and more evident that th...
Transcriptional programs regulating myogenesis are multi-layered, requiring carefully orchestrated t...
The myocyte enhancer factor (MEF)-2 family of transcription factors has been implicated in the regul...
The myocyte enhancer factor (MEF)-2 family of transcription factors has been implicated in the regul...
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
The heart responds to stress signals by hypertrophic growth, which is the first step towards heart f...
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
The heart responds to stress signals by hypertrophic growth, which is the first step towards heart f...
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
Proper formation of the mammalian heart requires precise spatiotemporal transcriptional regulation o...
Proper formation of the mammalian heart requires precise spatiotemporal transcriptional regulation o...
Myocyte enhancer factor 2A (MEF2A) is widely distributed in various tissues or organs and plays cruc...
microRNAs (miRNAs) are 21–23-nucleotide non-coding RNAs. It has become more and more evident that th...
Transcriptional programs regulating myogenesis are multi-layered, requiring carefully orchestrated t...
The myocyte enhancer factor (MEF)-2 family of transcription factors has been implicated in the regul...
The myocyte enhancer factor (MEF)-2 family of transcription factors has been implicated in the regul...
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
The heart responds to stress signals by hypertrophic growth, which is the first step towards heart f...
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
The heart responds to stress signals by hypertrophic growth, which is the first step towards heart f...
Circular RNAs (circRNAs) have been recognized as critical regulators of skeletal muscle development....
Proper formation of the mammalian heart requires precise spatiotemporal transcriptional regulation o...
Proper formation of the mammalian heart requires precise spatiotemporal transcriptional regulation o...
Myocyte enhancer factor 2A (MEF2A) is widely distributed in various tissues or organs and plays cruc...
microRNAs (miRNAs) are 21–23-nucleotide non-coding RNAs. It has become more and more evident that th...