CDK2 destabilizes tumor suppressor C/EBPα expression through ubiquitin‐mediated proteasome degradation in acute myeloid leukemia

2019 
Deregulation and functional inhibition of CCAAT-enhancer-binding protein alpha (C/EBPalpha), a key transcription factor of myeloid lineage leads to development of myeloid leukemia. In this study, we show that cyclin-dependent kinase 2 (CDK2) negatively regulates C/EBPalpha protein levels in myeloid leukemia cells. The overexpression of CDK2 inhibited C/EBPalpha both in a heterologous HEK293T and U937 myeloid leukemia cells. On the contrary, CDK2 depletion enhanced endogenous C/EBPalpha protein levels. CDK2 mitigated C/EBPalpha levels by promoting its ubiquitin-mediated proteasome degradation. We further showed that although CDK2 interacted with C/EBPalpha, direct interaction of CDK2 with C/EBPalpha is not involved in C/EBPalpha downregulation. CDK2-dependent phosphorylation of C/EBPalpha on its widely reported phosphorylatable amino acid residues is apparently not required for C/EBPalpha degradation by CDK2. Furthermore, our data demonstrate that CDK2-driven C/EBPalpha inhibition mitigates its transactivation potential and cellular functions such as ability to promote myeloid differentiation and growth arrest.
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