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MI-219-zinc combination: a new paradigm in MDM2 inhibitor-based therapy
A S Azmi1, P A Philip, F W J Beck
1Department of Pathology, Karmanos Cancer Institute, Wayne State University School of Medicine, Detroit, MI 48201, USA.
Abstract:
Zinc has a crucial role in the biology of p53 in that p53 binds to DNA through a structurally complex domain stabilized by zinc atom. The p53 negative regulator MDM2 protein also carries a C-terminal RING domain that coordinates two zinc atoms, which are responsible for p53 nuclear export and proteasomal degradation. In this clinically translatable study, we explored the critical role of zinc on p53 reactivation by MDM2 inhibitor, MI-219, in colon and breast cancer cells. ZnCl(2) enhanced MI-219 activity (3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT), apoptosis and colony formation), and chelation of zinc not only blocked the activity of MI-219, but also suppressed reactivation of the p53 and its downstream effector molecules p21(WAF1) and Bax. N,N,N'N'-tetrakis(-)[2-pyridylmethyl]-ethylenediamine (TPEN), a specific zinc chelator, but not 1,2-bis-(o-aminophenoxy)-ethane-N,N,N',N'-tetraacetic acid (Bapta-AM), a calcium chelator, blocked MI-219-induced apoptosis. Nuclear localization is a prerequisite for proper functioning of p53 and our results confirm that TPEN, and not Bapta-AM, could abrogate p53 nuclear localization and it interfered with p53 transcriptional activation. Addition of zinc suppressed the known p53 feedback MDM2 activation, which could be restored by TPEN. Co-immunoprecipitation studies verified that MI-219-mediated MDM2-p53 disruption could be suppressed by TPEN and restored by zinc. As such, single-agent therapies that target MDM2 inhibition, without supplemental zinc, may not be optimal in certain patients owing to the less recognized mild zinc deficiency among the 'at-risk population' as in the elderly who are more prone to cancers. Therefore, use of supplemental zinc with MI-219 will benefit the overall efficacy of MIs and this potent combination warrants further investigation.
Insights
Zinc supplementation enhances the effectiveness of MDM2 inhibitors like MI-219 in reactivating p53 for cancer therapy. Zinc deficiency can limit treatment efficacy, suggesting combined therapy for better outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- The p53 tumor suppressor protein's function is regulated by MDM2, a negative regulator.
- MDM2 utilizes zinc atoms for p53 nuclear export and degradation.
- Zinc is essential for p53 DNA binding and function.
Purpose of the Study:
- To investigate the role of zinc in p53 reactivation by the MDM2 inhibitor MI-219 in colon and breast cancer cells.
- To determine if zinc supplementation can enhance the efficacy of MDM2 inhibitors.
- To explore the impact of zinc chelation on p53 pathway reactivation.
Main Methods:
- Cell viability assays (MTT) and apoptosis assays were performed on cancer cells.
- Colony formation assays assessed the impact on cell proliferation.
- Zinc chelation using TPEN and calcium chelation using Bapta-AM were employed.
- p53 nuclear localization and transcriptional activity were analyzed.
- Co-immunoprecipitation studies examined MDM2-p53 interactions.
Main Results:
- Zinc supplementation (ZnCl2) significantly enhanced MI-219's anti-cancer effects, including increased apoptosis and reduced colony formation.
- Zinc chelation with TPEN blocked MI-219 activity, suppressed p53 reactivation, and inhibited p53 nuclear localization.
- MI-219-induced apoptosis was dependent on zinc, as TPEN abrogated it while Bapta-AM did not.
- Zinc addition suppressed MDM2 feedback activation, an effect reversed by TPEN.
- TPEN interfered with MI-219-mediated MDM2-p53 disruption, which was restored by zinc.
Conclusions:
- Zinc plays a critical role in mediating the efficacy of MDM2 inhibitors like MI-219.
- Zinc deficiency, common in at-risk populations, may limit the effectiveness of single-agent MDM2 inhibitors.
- Combined therapy with supplemental zinc and MDM2 inhibitors warrants further clinical investigation for improved cancer treatment outcomes.
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