Mcl-1 Degradation Is Required for Targeted Therapeutics to Eradicate Colon Cancer Cells
Jingshan Tong1,2, Peng Wang1,2, Shuai Tan1,2,3
1University of Pittsburgh Cancer Institute, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.
Abstract:
The Bcl-2 family protein Mcl-1 is often degraded in cancer cells subjected to effective therapeutic treatment, and defective Mcl-1 degradation has been associated with intrinsic and acquired drug resistance. However, a causal relationship between Mcl-1 degradation and anticancer drug responses has not been directly established, especially in solid tumor cells where Mcl-1 inhibition alone is insufficient to trigger cell death. In this study, we present evidence that Mcl-1 participates directly in determining effective therapeutic responses in colon cancer cells. In this setting, Mcl-1 degradation was induced by a variety of multikinase inhibitor drugs, where it relied upon GSK3β phosphorylation and FBW7-dependent ubiquitination. Specific blockade by genetic knock-in (KI) abolished apoptotic responses and conferred resistance to kinase inhibitors. Mcl-1-KI also suppressed the antiangiogenic and anti-hypoxic effects of kinase inhibitors in the tumor microenvironment. Interestingly, these same inhibitors also induced the BH3-only Bcl-2 family protein PUMA, which is required for apoptosis. Degradation-resistant Mcl-1 bound and sequestered PUMA from other prosurvival proteins to maintain cell survival, which was abolished by small-molecule Mcl-1 inhibitors. Our findings establish a pivotal role for Mcl-1 degradation in the response of colon cancer cells to targeted therapeutics, and they provide a useful rational platform to develop Mcl-1-targeting agents that can overcome drug resistance. Cancer Res; 77(9); 2512-21. ©2017 AACR.
Insights
Mcl-1 protein degradation is crucial for colon cancer cells to respond to targeted therapies. Blocking Mcl-1 degradation prevents cell death and drug response, highlighting Mcl-1 as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Defective Mcl-1 degradation is linked to drug resistance in cancer.
- Mcl-1 inhibition alone is insufficient for cell death in solid tumors.
Purpose of the Study:
- To establish a direct causal relationship between Mcl-1 degradation and anticancer drug response in colon cancer.
- To investigate the role of Mcl-1 in mediating therapeutic responses and drug resistance.
Main Methods:
- Utilized genetic knock-in (KI) to create degradation-resistant Mcl-1.
- Investigated Mcl-1 degradation pathways involving GSK3β phosphorylation and FBW7-dependent ubiquitination.
- Assessed the impact of Mcl-1 degradation on apoptotic responses, kinase inhibitor efficacy, and tumor microenvironment effects.
Main Results:
- Mcl-1 degradation, induced by multikinase inhibitors, is essential for colon cancer cell apoptosis.
- Genetic blockade of Mcl-1 degradation conferred resistance to kinase inhibitors and suppressed antiangiogenic/anti-hypoxic effects.
- Degradation-resistant Mcl-1 sequestered PUMA, preventing apoptosis and maintaining cell survival.
Conclusions:
- Mcl-1 degradation plays a pivotal role in colon cancer cell response to targeted therapeutics.
- Mcl-1 degradation is a critical determinant of sensitivity and resistance to kinase inhibitors.
- Targeting Mcl-1 degradation offers a rational strategy to overcome drug resistance in colon cancer.
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