Phosphorylation motifs regulating the stability and function of myocyte enhancer factor 2A

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Abstract

The phosphorylation status of the myocyte enhancer factor 2 (MEF2) transcriptional regulator is a critical determinant of its tissue-specific functions. However, due to the complexity of its phosphorylation pattern in vivo, a systematic inventory of MEF2A phosphorylation sites in mammalian cells has been difficult to obtain. We employed modern affinity purification techniques, combined with mass spectrometry, to identify several novel MEF2 phosphoacceptor sites. These include an evolutionarily conserved KSP motif, which we show is important in regulating the stability and function of MEF2A. Also, an indirect pathway in which a protein kinase casein kinase 2 phosphoacceptor site is phosphorylated by activation of p38 MAPK signaling was documented. Together, these findings identify several novel aspects of MEF2 regulation that may prove important in the control of gene expression in neuronal and muscle cells.

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Cox, D. M., Du, M., Marback, M., Yang, E. C. C., Chan, J., Siu, K. W. M., & McDermott, J. C. (2003). Phosphorylation motifs regulating the stability and function of myocyte enhancer factor 2A. Journal of Biological Chemistry, 278(17), 15297–15303. https://doi.org/10.1074/jbc.M211312200

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