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Establishing Cell Lines Overexpressing DR3 to Assess the Apoptotic Response to Anti-mitotic Therapeutics
Published on: January 11, 2019
Nutlin-3 preferentially sensitises wild-type p53-expressing cancer cells to DR5-selective TRAIL over rhTRAIL
A Meijer1, F A E Kruyt, A G J van der Zee
1Department of Medical Oncology, Cancer Research Center Groningen, University of Groningen, University Medical Centre Groningen, Groningen, The Netherlands.
Background:
Tumour cell-selective activation of apoptosis by recombinant human TNF-related apoptosis-inducing ligand (rhTRAIL) is enhanced through co-activation of p53 by chemotherapeutic drugs. The novel anticancer agent nutlin-3 provides a promising alternative for p53 activation by disrupting the interaction between p53 and its negative feedback regulator MDM2.
Methods:
We examined whether nutlin-3 enhances apoptosis induction by rhTRAIL and the DR5-selective TRAIL variant D269H/E195R in wild-type p53-expressing ovarian, colon and lung cancer cell lines and in an ex vivo model of human ovarian cancer.
Results:
Nutlin-3 enhanced p53, p21, MDM2 and DR5 surface expression. Although nutlin-3 did not induce apoptosis, it preferentially enhanced D269H/E195R-induced apoptosis over rhTRAIL. Combination treatment potentiated the cleavage of caspases 8, 9, 3 and PARP. P53 and MDM2 siRNA experiments showed that this enhanced apoptotic effect was mediated by wild-type p53. Indeed, nutlin-3 did not enhance rhTRAIL-induced apoptosis in OVCAR-3 cells harbouring mutant p53. Addition of the chemotherapeutic drug cisplatin to the combination further increased p53 and DR5 levels and rhTRAIL- and D269H/E195R-induced apoptosis. As a proof of concept, we show that the combination of D269H/E195R, nutlin-3 and cisplatin induced massive apoptosis in ex vivo tissue slices of primary human ovarian cancers.
Conclusion:
Nutlin-3 is a potent enhancer of D269H/E195R-induced apoptosis in wild-type p53-expressing cancer cells. Addition of DNA-damaging agents such as cisplatin further enhances DR5-mediated apoptosis.
Insights
Nutlin-3 enhances cancer cell apoptosis when combined with a TRAIL variant (D269H/E195R) in p53-expressing cells. Adding cisplatin further boosts this effect, showing promise for ovarian cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Recombinant human TNF-related apoptosis-inducing ligand (rhTRAIL) induces apoptosis in tumor cells, enhanced by p53 activation.
- Nutlin-3 activates p53 by inhibiting MDM2, offering an alternative to traditional chemotherapeutics for p53 activation.
Purpose of the Study:
- To investigate if nutlin-3 enhances apoptosis induced by rhTRAIL and its DR5-selective variant (D269H/E195R).
- To evaluate the role of wild-type p53 in mediating this enhanced apoptotic effect.
- To assess the impact of combining nutlin-3 with cisplatin on apoptosis induction.
Main Methods:
- Tested nutlin-3's effect on apoptosis induction by rhTRAIL and D269H/E195R in wild-type p53 cancer cell lines (ovarian, colon, lung).
- Utilized siRNA to confirm the role of p53 and MDM2 in the observed apoptosis.
- Examined apoptosis in an ex vivo model of human ovarian cancer using D269H/E195R, nutlin-3, and cisplatin.
Main Results:
- Nutlin-3 increased p53, p21, MDM2, and DR5 expression, enhancing D269H/E195R-induced apoptosis more than rhTRAIL-induced apoptosis.
- Enhanced apoptosis was dependent on wild-type p53, as nutlin-3 did not affect apoptosis in mutant p53 cells.
- Combination therapy with nutlin-3, D269H/E195R, and cisplatin induced significant apoptosis in ex vivo ovarian cancer tissues.
Conclusions:
- Nutlin-3 effectively enhances D269H/E195R-induced apoptosis in cancer cells with wild-type p53.
- DNA-damaging agents like cisplatin further potentiate DR5-mediated apoptosis when combined with nutlin-3 and D269H/E195R.
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