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Deregulated expression of CDK2- or CDK3-associated kinase activities enhances c-Myc-induced apoptosis
1Obstetrics and Gynecology, Department of Prenatal Diagnosis and Therapy, University of Vienna, Austria.
Abstract:
Activation of high ectopic levels of c-Myc in serum-deprived Rat1-MycER cells by 4-hydroxytamoxifen induces both proliferation and apoptosis. To further elucidate the role of G1 cyclin-dependent kinases (CDKs) in the process of Myc-induced apoptosis, we generated Rat1-MycER cells stably overexpressing CDK2 or CDK3. Ectopic expression of these CDKs in Myc-overexpressing cells was accompanied by upregulation of the specific kinase activities. Whereas neither high ectopic CDK2 nor CDK3 alone induced apoptosis in serum-deprived Rat1 cells, both CDKs markedly elevated the incidence of Myc-induced apoptosis. It was shown earlier that in Rat1-MycER cells, which are resistant to tumor necrosis factor-alpha (TNF) when grown in high serum concentrations, the addition of TNF with the concomitant activation of Myc resulted in apoptotic cell death. Here, we show that neither CDK2 nor CDK3 induces susceptibility to the cytotoxic action of TNF in Rat1 cells. However, both molecules heavily elevated the incidence of apoptosis induced by TNF together with Myc. It has earlier been reported that Myc-induced apoptosis in serum-deprived Rat1 fibroblasts is inhibited by specific cytokines, such as platelet-derived growth factor (PDGF). Here, we demonstrate that PDGF-mediated protection from Myc-induced apoptosis is almost lost in Rat1 cells overexpressing CDK2 or CDK3. These apoptotic effects of CDK2 or CDK3 are not accompanied by alterations of proliferation parameters, such as DNA distribution, time the cells spend in each phase of the cell cycle, thymidine incorporation into DNA, or cell size analyzed during Myc-induced apoptosis. However, we found CDK3 to deregulate E2F-dependent transcription. In this report, we provide evidence for a not yet described property of CDK2 or CDK3 besides their activity in promoting proliferation: these G1-CDKs can promote apoptosis by interfering with the cell's response to survival factors.
Insights
Cyclin-dependent kinases 2 and 3 (CDK2/CDK3) promote apoptosis, not proliferation, when c-Myc is activated. These G1-CDKs enhance Myc-induced cell death by interfering with survival factor responses.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- c-Myc activation in serum-deprived cells induces proliferation and apoptosis.
- The precise role of G1 cyclin-dependent kinases (CDKs) in Myc-induced apoptosis remains unclear.
Purpose of the Study:
- To investigate the role of CDK2 and CDK3 in Myc-induced apoptosis.
- To determine if CDK2 or CDK3 influence cell proliferation or susceptibility to apoptosis-inducing agents.
Main Methods:
- Generated Rat1-MycER cells overexpressing CDK2 or CDK3.
- Activated c-Myc using 4-hydroxytamoxifen.
- Assessed apoptosis incidence with or without tumor necrosis factor-alpha (TNF) and platelet-derived growth factor (PDGF).
- Analyzed proliferation parameters and E2F-dependent transcription.
Main Results:
- Overexpression of CDK2 or CDK3 enhanced Myc-induced apoptosis without affecting proliferation.
- CDK2/CDK3 did not induce apoptosis alone or increase susceptibility to TNF.
- CDK2/CDK3 overexpression diminished PDGF-mediated protection from Myc-induced apoptosis.
- CDK3 overexpression deregulated E2F-dependent transcription.
Conclusions:
- CDK2 and CDK3, beyond their proliferative roles, promote apoptosis.
- These G1-CDKs interfere with cellular responses to survival factors, contributing to apoptosis.
- CDK2/CDK3 represent novel targets for modulating Myc-driven apoptosis.