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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
p52-ZER6: a determinant of tumor cell sensitivity to MDM2-p53 binding inhibitors
Wen-Fang Li1,2, Leader Alfason1,2, Can Huang3
1Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing, 400044, China.
Abstract:
Targeting MDM2-p53 interaction has emerged as a promising antitumor therapeutic strategy. Several MDM2-p53 inhibitors have advanced into clinical trials, but results are not favorable. The lack of appropriate biomarkers for selecting patients has been assumed as the critical reason for this failure. We previously identified ZER6 isoform p52-ZER6 as an oncogene upregulated in tumor tissues. In this study we investigated whether p52-ZER6 acted as a blocker of MDM2-p53 binding inhibitors, and whether p52-ZER6 could be used as a biomarker of MDM2-p53 binding inhibitors. In p53 wild-type colorectal carcinoma HCT116, hepatocarcinoma HepG2 and breast cancer MCF-7 cells, overexpression of p52-ZER6 enhanced MDM2-p53 binding and promoted p53 ubiquitination/proteasomal degradation. Furthermore, overexpression of p52-ZER6 in the tumor cells dose-dependently reduced their sensitivity to both nutlin and non-nutlin class MDM2-p53 binding inhibitors. We showed that p52-ZER6 restored tumor cell viability, which was suppressed by nutlin-3, through restoring their proliferation potential while suppressing their apoptotic rate, suggesting that MDM2-p53 binding inhibitors might not be effective for patients with high p52-ZER6 levels. We found that nutlin-3 treatment or p52-ZER6 knockdown alone promoted the accumulation of p53 protein in the tumor cells, and their combinatorial treatment significantly increased the accumulation of p53 protein. In HCT116 cell xenograft nude mouse model, administration of shp52-ZER6 combined with an MDM2-p53 binding inhibitor nutlin-3 exerted synergistic antitumor response. In conclusion, this study reveals that p52-ZER6 might be a potential biomarker for determining patients appropriate for MDM2-p53 binding inhibition-based antitumor therapy, and demonstrates the potential of combinatorial therapy using MDM2-p53 binding inhibitors and p52-ZER6 inhibition.
Insights
p52-ZER6 protein blocks MDM2-p53 inhibitors, reducing their effectiveness in cancer treatment. Targeting p52-ZER6 alongside MDM2-p53 inhibitors shows synergistic antitumor effects and potential as a biomarker.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Targeting the MDM2-p53 interaction is a key cancer therapy strategy.
- Clinical trial failures highlight the need for patient selection biomarkers.
- p52-ZER6, an oncogenic isoform, is upregulated in tumor tissues.
Purpose of the Study:
- To investigate if p52-ZER6 blocks MDM2-p53 inhibitors.
- To determine if p52-ZER6 can serve as a biomarker for these inhibitors.
- To explore combinatorial therapy with p52-ZER6 inhibition and MDM2-p53 inhibitors.
Main Methods:
- Overexpression of p52-ZER6 in cancer cell lines (HCT116, HepG2, MCF-7).
- Assessing p53 ubiquitination and degradation.
- Evaluating cell viability, proliferation, and apoptosis.
- In vivo studies using HCT116 xenograft nude mouse models.
- p52-ZER6 knockdown and MDM2-p53 inhibitor (nutlin-3) treatment.
Main Results:
- p52-ZER6 overexpression enhances MDM2-p53 binding and p53 degradation.
- p52-ZER6 reduces cancer cell sensitivity to MDM2-p53 inhibitors.
- Combined p52-ZER6 inhibition and nutlin-3 show synergistic antitumor effects in vivo.
- Combinatorial treatment significantly increases p53 protein accumulation.
Conclusions:
- p52-ZER6 acts as a resistance factor to MDM2-p53 binding inhibitors.
- p52-ZER6 is a potential predictive biomarker for MDM2-p53 inhibitor therapy.
- Combination therapy with MDM2-p53 inhibitors and p52-ZER6 inhibition offers a promising antitumor strategy.
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