# Myocyte enhancer factor 2C

> mammalian protein found in Mus musculus

**Wikidata**: [Q21985118](https://www.wikidata.org/wiki/Q21985118)  
**Source**: https://4ort.xyz/entity/myocyte-enhancer-factor-2c-q21985118


## References

1. UniProt
2. [InterPro Release 71.0](http://www.ebi.ac.uk/interpro/protein/Q8CFN5)
3. Q20641742
4. [GOA](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
5. [Cyclin D-cdk4 activity modulates the subnuclear localization and interaction of MEF2 with SRC-family coactivators during skeletal muscle differentiation](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
6. [GOA](http://www.ebi.ac.uk/QuickGO/annotations?protein=Q8CFN5&geneProductId=UniProtKB:Q8CFN5)
7. [Polycystin-dependent fluid flow sensing targets histone deacetylase 5 to prevent the development of renal cysts](http://www.ebi.ac.uk/QuickGO/annotations?protein=Q8CFN5&geneProductId=UniProtKB:Q8CFN5)
8. [Regulatory role of MEF2D in serum induction of the c-jun promoter](http://www.ebi.ac.uk/QuickGO/annotations?protein=Q8CFN5&geneProductId=UniProtKB:Q8CFN5)
9. [Regulation of skeletal muscle sarcomere integrity and postnatal muscle function by Mef2c](http://www.ebi.ac.uk/QuickGO/annotations?protein=Q8CFN5&geneProductId=UniProtKB:Q8CFN5)
10. [Myocyte enhancer factor (MEF) 2C: a tissue-restricted member of the MEF-2 family of transcription factors](http://www.ebi.ac.uk/QuickGO/annotations?protein=Q8CFN5&geneProductId=UniProtKB:Q8CFN5)
11. [Polycystin-dependent fluid flow sensing targets histone deacetylase 5 to prevent the development of renal cysts](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
12. [MEF2B is a potent transactivator expressed in early myogenic lineages](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
13. [Regulatory role of MEF2D in serum induction of the c-jun promoter](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
14. [Regulation of skeletal muscle sarcomere integrity and postnatal muscle function by Mef2c](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
15. [Myocyte enhancer factor (MEF) 2C: a tissue-restricted member of the MEF-2 family of transcription factors](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
16. [Regulation of skeletal myogenesis by association of the MEF2 transcription factor with class II histone deacetylases](http://www.ebi.ac.uk/QuickGO/annotations?protein=Q8CFN5&geneProductId=UniProtKB:Q8CFN5)
17. [BOP, a regulator of right ventricular heart development, is a direct transcriptional target of MEF2C in the developing heart](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
18. [SOX18 directly interacts with MEF2C in endothelial cells](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
19. [The MADS box transcription factor MEF2C regulates melanocyte development and is a direct transcriptional target and partner of SOX10](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
20. [MEF2B is a potent transactivator expressed in early myogenic lineages](http://www.ebi.ac.uk/QuickGO/annotations?protein=Q8CFN5&geneProductId=UniProtKB:Q8CFN5)
21. [Differentiation-dependent lysine 4 acetylation enhances MEF2C binding to DNA in skeletal muscle cells](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
22. [TRIM72, a novel negative feedback regulator of myogenesis, is transcriptionally activated by the synergism of MyoD (or myogenin) and MEF2](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
23. [Sumoylation regulates nuclear localization of lipin-1alpha in neuronal cells](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
24. [A p38 MAPK-MEF2C pathway regulates B-cell proliferation](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
25. [Coactivation of MEF2 by the SAP domain proteins myocardin and MASTR](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
26. [MEF2C regulates c‐Jun but not TNF‐α gene expression in stimulated mast cells](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
27. [Transcriptional corepressors HIPK1 and HIPK2 control angiogenesis via TGF-β-TAK1-dependent mechanism](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
28. [Skeletal myosin light chain kinase regulates skeletal myogenesis by phosphorylation of MEF2C](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
29. [MEF2C transcription factor controls chondrocyte hypertrophy and bone development](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
30. [The transcription factor MEF2C is required for craniofacial development](http://www.ebi.ac.uk/QuickGO/annotations?protein=Q8CFN5&geneProductId=UniProtKB:Q8CFN5)
31. [An intragenic MEF2-dependent enhancer directs muscle-specific expression of microRNAs 1 and 133](http://www.ebi.ac.uk/QuickGO/annotations?protein=Q8CFN5&geneProductId=UniProtKB:Q8CFN5)
32. [Centronuclear myopathy in mice lacking a novel muscle-specific protein kinase transcriptionally regulated by MEF2](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
33. [The cardiac pacemaker-specific channel Hcn4 is a direct transcriptional target of MEF2](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
34. [VITO-1 is an essential cofactor of TEF1-dependent muscle-specific gene regulation](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
35. [The MADS box transcription factor MEF2C regulates melanocyte development and is a direct transcriptional target and partner of SOX10](http://www.ebi.ac.uk/QuickGO/annotations?protein=Q8CFN5&geneProductId=UniProtKB:Q8CFN5)
36. [Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
37. [Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium](http://www.ebi.ac.uk/QuickGO/annotations?protein=Q8CFN5&geneProductId=UniProtKB:Q8CFN5)
38. [Regulation of skeletal myogenesis by association of the MEF2 transcription factor with class II histone deacetylases](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
39. [The transcription factor MEF2C is required for craniofacial development](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
40. [An intragenic MEF2-dependent enhancer directs muscle-specific expression of microRNAs 1 and 133](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
41. [Calreticulin signals upstream of calcineurin and MEF2C in a critical Ca(2+)-dependent signaling cascade](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
42. [Uncovering early response of gene regulatory networks in ESCs by systematic induction of transcription factors](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
43. [Signal-dependent nuclear export of a histone deacetylase regulates muscle differentiation](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
44. [Myocyte enhancer factor 2C as a neurogenic and antiapoptotic transcription factor in murine embryonic stem cells](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
45. [Transcription factor MEF2C influences neural stem/progenitor cell differentiation and maturation in vivo](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
46. [MEF2C, a transcription factor that facilitates learning and memory by negative regulation of synapse numbers and function](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
47. [Cooperative interaction of Nkx2.5 and Mef2c transcription factors during heart development](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
48. [The MADS transcription factor Mef2c is a pivotal modulator of myeloid cell fate](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
49. [MEF2C is required for the normal allocation of cells between the ventricular and sinoatrial precursors of the primary heart field](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)
50. [Control of mouse cardiac morphogenesis and myogenesis by transcription factor MEF2C](http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8CFN5)