[MEF2 and myogenesis].
Zhenlong Cheng, Dahai Zhu, Zhiqian Zhang
Abstract
Zhenlong Cheng, Dahai Zhu, Zhiqian Zhang
Abstract
Recent genetic and biochemical studies have demonstrated that skeletal muscle growth and differentiation in vertebrates are controlled by a core regulatory network which consists of two families of transcriptional factors, the MyoD group basic helix-loop-helix (bHLH) muscle regulatory factors (MRFs) and the myocyte enhancer factor 2 (MEF2) group of MADS-box regulators. During development, MEF2 interacts genetically and physically with different members of this myogenic network and together they cooperate to positively or negatively regulate transcription of downstream muscle-specific differentiation genes. This paper reviews current understanding of molecular mechanism of these interactions and essential roles that MEF2 plays in skeletal muscle growth and differentiation during development.
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Recent genetic and biochemical studies have demonstrated that skeletal muscle growth and differentiation in vertebrates are controlled by a core regulatory network which consists of two families of transcriptional factors, the MyoD group basic helix-loop-helix (bHLH) muscle regulatory factors (MRFs) and the myocyte enhancer factor 2 (MEF2) group of MADS-box regulators. During development, MEF2 interacts genetically and physically with different members of this myogenic network and together they cooperate to positively or negatively regulate transcription of downstream muscle-specific differentiation genes. This paper reviews current understanding of molecular mechanism of these interactions and essential roles that MEF2 plays in skeletal muscle growth and differentiation during development.
Key concepts: MyoD, Mef2, Myogenesis, Biology, Enhancer, Transcription factor, Myocyte, Myogenic regulatory factors