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ProteinQ416095· pop 7· linked from 863 articles

myogenic differentiation 1

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Also known as class C basic helix-loop-helix protein 1, myogenic factor 3, myf-3, myoblast determination protein 1, bHLHc1, MYOD1

MyoD, also known as myoblast determination protein 1, is a protein in animals that plays a major role in regulating muscle differentiation. MyoD, which was discovered in the laboratory of Harold M. Weintraub, belongs to a family of proteins known as myogenic regulatory factors (MRFs). These bHLH (basic helix loop helix) transcription factors act sequentially in myogenic differentiation. Vertebrate MRF family members include MyoD1, Myf5, myogenin, and MRF4 (Myf6). In non-vertebrate animals, a single MyoD protein is typically found.

Protein · UniProt

Myoblast determination protein 1

Gene
MYOD1
Organism
Homo sapiens (Human)
Length
320 aa
Molecular mass
34,501 Da
Evidence
1: Evidence at protein level

Acts as a transcriptional activator that promotes transcription of muscle-specific target genes and plays a role in muscle differentiation. Together with MYF5 and MYOG, co-occupies muscle-specific gene promoter core region during myogenesis. Induces fibroblasts to differentiate into myoblasts. Interacts with and is inhibited by the twist protein. This interaction probably involves the basic domains of both proteins (By similarity)

AcetylationActivatorDevelopmental proteinDifferentiationDisease variantDNA-bindingMethylationMyogenesis
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Swiss-Prot (reviewed) · via UniProt

Wikidata facts

Instance of
protein
Show 3 more facts
cell component
nucleus
found in taxon
Homo sapiens
Sources (4)

via Wikidata · CC0

~11 min read

Encyclopedic overview

8 sections
Contents
  • History
  • Function
  • Mechanisms
  • Wnt signalling can affect MyoD
  • Coactivators and repressors
  • Interactions
  • References
  • External links

MyoD, also known as myoblast determination protein 1, is a protein in animals that plays a major role in regulating muscle differentiation. MyoD, which was discovered in the laboratory of Harold M. Weintraub, belongs to a family of proteins known as myogenic regulatory factors (MRFs). These bHLH (basic helix loop helix) transcription factors act sequentially in myogenic differentiation. Vertebrate MRF family members include MyoD1, Myf5, myogenin, and MRF4 (Myf6). In non-vertebrate animals, a single MyoD protein is typically found.

MyoD is one of the earliest markers of myogenic commitment. MyoD is expressed at extremely low and essentially undetectable levels in quiescent satellite cells, but expression of MyoD is activated in response to exercise or muscle tissue damage. The effect of MyoD on satellite cells is dose-dependent; high MyoD expression represses cell renewal, promotes terminal differentiation and can induce apoptosis. Although MyoD marks myoblast commitment, muscle development is not dramatically ablated in mouse mutants lacking the MyoD gene. This is likely due to functional redundancy from Myf5 and/or Mrf4. Nevertheless, the combination of MyoD and Myf5 is vital to the success of myogenesis.

Excerpted from Wikipedia’s “myogenic differentiation 1” article, available under the CC BY-SA 4.0 licence.

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