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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Functional Activation of Mutant p53 by Platinum Analogues in Cisplatin-Resistant Cells Is Dependent on
Xiaolei Xie1, Guangan He1, Zahid H Siddik2
1Department of Experimental Therapeutics, The University of Texas MD Anderson Cancer Center, Houston, Texas.
Abstract:
Dysfunctionality of the p53 tumor suppressor is a major cause of therapeutic drug resistance in cancer. Recently, we reported that mutant, but otherwise functional, p53v172F was inactivated in cisplatin-resistant 2780CP/Cl-16 and 2780CP/Cl-24 human ovarian tumor cells by increased recruitment of the inhibitor MDM4. The current study demonstrates that, unlike cisplatin, platinum analogues oxaliplatin and DACH-diacetato-dichloro-Pt(IV) (DAP) strongly stabilize and activate p53v172F in resistant cells, as indicated by prolonged p53 half-life and transactivation of targets p21 (CDKN1A) and MDM2. This increase in MDM2 reduced MDM4 levels in cell lysates as well as the p53 immunocomplex and prevented reversion of p53 to the inactive p53-MDM2-MDM4-bound state. Phosphorylation of p53 at Ser15 was demonstrated by all three drugs in sensitive A2780 and corresponding resistant 2780CP/Cl-16 and 2780CP/Cl-24 cell lines. However, cisplatin induced Ser20 phosphorylation in A2780 cells only, but not in resistant cells; in contrast, both DAP and oxaliplatin induced this phosphorylation in all three cell lines. The inference that Ser20 phosphorylation is more important for p53 activation was confirmed by ectopic expression of a phosphomimetic (S20D) mutant p53 that displayed reduced binding, relative to wild-type p53, to both MDM2 and MDM4 in p53-knockout A2780 cells. In consonance, temporal studies demonstrated drug-induced Ser15 phosphorylation coincided with p53 stabilization, whereas Ser20 phosphorylation coincided with p53 transactivation.Implications: Cisplatin fails to activate the pathway involved in phosphorylating mutant p53v172F at Ser20 in resistant cells, but this phosphorylation is restored by oxaliplatin and DAP that reactivates p53 function and circumvents cisplatin resistance. Mol Cancer Res; 15(3); 328-39. ©2016 AACR.
Insights
Platinum drugs oxaliplatin and DAP reactivate the tumor suppressor p53 (mutant v172F) in cisplatin-resistant ovarian cancer cells by restoring Ser20 phosphorylation, overcoming drug resistance and restoring p53 function.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Dysfunctional p53 tumor suppressor is a key driver of cancer therapeutic drug resistance.
- Mutant p53 (p53v172F) is inactivated by MDM4 in cisplatin-resistant ovarian cancer cells.
- Cisplatin resistance is a significant challenge in ovarian cancer treatment.
Purpose of the Study:
- To investigate the differential effects of platinum analogues (oxaliplatin, DAP) versus cisplatin on mutant p53v172F activity in resistant ovarian cancer cells.
- To elucidate the role of p53 phosphorylation at Ser15 and Ser20 in drug response and resistance.
- To determine if oxaliplatin and DAP can overcome cisplatin resistance by reactivating p53.
Main Methods:
- Treatment of sensitive (A2780) and cisplatin-resistant (2780CP/Cl-16, 2780CP/Cl-24) ovarian cancer cells with cisplatin, oxaliplatin, and DAP.
- Analysis of p53 half-life, target gene transactivation (p21, MDM2), and MDM4 levels.
- Assessment of p53 phosphorylation at Ser15 and Ser20 using Western blotting and phosphomimetic mutant p53 expression.
Main Results:
- Oxaliplatin and DAP, unlike cisplatin, stabilized and activated p53v172F in resistant cells, indicated by prolonged p53 half-life and p21/MDM2 transactivation.
- Oxaliplatin and DAP induced Ser20 phosphorylation of p53 in all cell lines, while cisplatin only induced it in sensitive cells.
- Ser20 phosphorylation correlated with p53 transactivation and was essential for overcoming drug resistance, unlike Ser15 phosphorylation.
Conclusions:
- Cisplatin fails to induce critical Ser20 phosphorylation of mutant p53v172F in resistant cells.
- Oxaliplatin and DAP restore p53 function in cisplatin-resistant ovarian cancer by inducing Ser20 phosphorylation.
- These findings suggest oxaliplatin and DAP as potential therapeutic agents to circumvent cisplatin resistance in ovarian cancer.
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