The E3 ligase APC/C-Cdh1 regulates MEF2A-dependent transcription by targeting SUMO-specific protease 2 for ubiquitination and degradation
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https://tandf.figshare.com/articles/dataset/The_E3_ligase_APC_C_Cdh1_regulates_MEF2A_dependent_transcription_by_targeting_SUMO_specific_protease_2_for_ubiquitination_and_degradation/1284396
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Activity-dependent stimuli induced a calcineurin-mediated dephosphorylation of the transcriptional factor MEF2A at serine408 and promoted a switch from SUMOylation to acetylation at lysine403 which led to MEF2A transcriptional activation. We previously identified SENP2 is the de-SUMOylation enzyme for MEF2A and promotes MEF2A-dependent transcription. We report here a requirement for APC<sup>Cdh1</sup>-SENP2-MEF2A axis in the regulation of MEF2A transcriptional activation. APC<sup>Cdh1</sup> interacts with and targets SENP2 for ubiquitination and destruction in the cytoplasm by recognizing a conserved canonical D-box motif in SENP2. Moreover, Cdh1 regulates the transcriptional activity of MEF2A in a SENP2 dependent manner. Activity-dependent stimuli prevented APC<sup>Cdh1</sup>-induced SENP2 ubiquitination, promoted SENP2 nuclear accumulations, and caused MEF2A de-SUMOylation and MEF2A acetylation, leading to MEF2A transcriptional activation. Thus, our findings defined a post-transcriptional mechanism underlying activity-dependent stimuli-induced MEF2A transcriptional activation.
提供机构:
Taylor & Francis
创建时间:
2015-01-04



