AP4 directly downregulates p16 and p21 to suppress senescence and mediate transformation
R Jackstadt1, P Jung, H Hermeking
1Experimental and Molecular Pathology, Institute of Pathology, Ludwig-Maximilians-Universität München, Thalkirchner Strasse 36, D-80337 Munich, Germany.
Abstract:
Here we analyzed the function of the c-MYC-inducible basic helix-loop-helix leucine-zipper transcription factor AP4 in AP4-deficient mouse embryo fibroblasts (MEFs). Loss of AP4 resulted in premature senescence and resistance towards immortalization. Senescence was accompanied by induction of the cyclin-dependent kinase inhibitor-encoding genes p16, a known tumor suppressor, and p21, a previously described target for repression by AP4. Notably, AP4 directly repressed p16 expression via conserved E-box motifs in MEFs and human diploid fibroblasts. Senescence caused by AP4-deficiency was prevented by depletion of p16 and/or p21, demonstrating that these factors mediate senescence caused by AP4 loss. As senescence induced by the loss of AP4 was rescued by ectopic AP4, secondary lesions were not involved in causing premature senescence. Activation of c-MYC resulted in repression of p21 and p16 in AP4(+/+), but not in AP4(-/-) MEFs. Furthermore, after combined expression of c-MYC and mutant RAS in MEFs, AP4 was required for colony formation, anchorage-independent growth and tumor formation in mice. In addition, combined ectopic expression of AP4 and mutant RAS in MEFs resulted in colony formation. However, additional loss of the p53 tumor suppressor was necessary for anchorage-independent growth and tumor formation of MEFs by combined AP4 and mutant RAS expression. In conclusion, this study identified AP4 as an oncogenic antagonist of cellular senescence. AP4 achieves this effect by direct repression of p16 and p21, and may thereby critically contribute to c-MYC function and tumor progression.
Insights
The transcription factor AP4 prevents cellular senescence by repressing p16 and p21. Loss of AP4 leads to premature senescence, highlighting AP4
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- The transcription factor AP4 (basic helix-loop-helix leucine-zipper) is induced by c-MYC.
- Cellular senescence is a state of irreversible cell cycle arrest that acts as a tumor suppressor mechanism.
- Understanding regulators of senescence is crucial for cancer research.
Purpose of the Study:
- To investigate the role of AP4 in regulating cellular senescence.
- To determine the molecular mechanisms by which AP4 influences senescence.
- To assess AP4's contribution to oncogenesis in conjunction with c-MYC and RAS.
Main Methods:
- Analysis of AP4-deficient mouse embryo fibroblasts (MEFs).
- Gene expression analysis of p16 and p21.
- Functional assays including senescence induction, ectopic gene expression, and tumor formation in mice.
- Depletion and rescue experiments.
Main Results:
- Loss of AP4 induced premature senescence in MEFs, which was mediated by p16 and p21.
- AP4 directly repressed p16 expression via E-box motifs.
- AP4 was required for c-MYC-induced repression of p16 and p21.
- AP4, in combination with c-MYC and RAS, promoted anchorage-independent growth and tumor formation, with p53 loss being necessary for tumorigenesis.
Conclusions:
- AP4 acts as an oncogenic antagonist of cellular senescence.
- AP4 represses the expression of p16 and p21, thereby preventing senescence.
- AP4 plays a significant role in promoting tumor progression, particularly in cooperation with c-MYC and RAS.
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