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Updated: Jul 18, 2025

Tumor Engraftment in a Xenograft Mouse Model of Human Mantle Cell Lymphoma
Published on: March 30, 2018
Targeting MCL-1 protein to treat cancer: opportunities and challenges
Shady I Tantawy1, Natalia Timofeeva1, Aloke Sarkar1
1Department of Experimental Therapeutics, The University of Texas MD Anderson Cancer Center, Houston, TX, United States.
Abstract:
Evading apoptosis has been linked to tumor development and chemoresistance. One mechanism for this evasion is the overexpression of prosurvival B-cell lymphoma-2 (BCL-2) family proteins, which gives cancer cells a survival advantage. Mcl-1, a member of the BCL-2 family, is among the most frequently amplified genes in cancer. Targeting myeloid cell leukemia-1 (MCL-1) protein is a successful strategy to induce apoptosis and overcome tumor resistance to chemotherapy and targeted therapy. Various strategies to inhibit the antiapoptotic activity of MCL-1 protein, including transcription, translation, and the degradation of MCL-1 protein, have been tested. Neutralizing MCL-1's function by targeting its interactions with other proteins via BCL-2 interacting mediator (BIM)S2A has been shown to be an equally effective approach. Encouraged by the design of venetoclax and its efficacy in chronic lymphocytic leukemia, scientists have developed other BCL-2 homology (BH3) mimetics-particularly MCL-1 inhibitors (MCL-1i)-that are currently in clinical trials for various cancers. While extensive reviews of MCL-1i are available, critical analyses focusing on the challenges of MCL-1i and their optimization are lacking. In this review, we discuss the current knowledge regarding clinically relevant MCL-1i and focus on predictive biomarkers of response, mechanisms of resistance, major issues associated with use of MCL-1i, and the future use of and maximization of the benefits from these agents.
Insights
Targeting myeloid cell leukemia-1 (MCL-1) protein helps induce apoptosis and overcome cancer resistance. This review analyzes MCL-1 inhibitors, focusing on challenges and optimization strategies for better cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Cancer cells evade apoptosis through prosurvival B-cell lymphoma-2 (BCL-2) family proteins.
- Myeloid cell leukemia-1 (MCL-1) is frequently amplified in cancer, conferring a survival advantage.
- Targeting MCL-1 is a key strategy to induce cancer cell apoptosis and overcome chemoresistance.
Purpose of the Study:
- To review current knowledge on clinically relevant MCL-1 inhibitors (MCL-1i).
- To critically analyze challenges and optimization strategies for MCL-1i.
- To discuss predictive biomarkers, resistance mechanisms, and future applications of MCL-1i.
Main Methods:
- Literature review of existing studies on MCL-1 inhibitors.
- Analysis of strategies targeting MCL-1 function (transcription, translation, degradation, protein interactions).
- Examination of BCL-2 homology (BH3) mimetics and their clinical trial status.
Main Results:
- Various strategies exist to inhibit MCL-1, including BH3 mimetics.
- MCL-1 inhibitors are in clinical trials for diverse cancers.
- Understanding resistance mechanisms and predictive biomarkers is crucial for MCL-1i efficacy.
Conclusions:
- MCL-1 inhibition is a promising therapeutic strategy for various cancers.
- Addressing challenges and optimizing MCL-1i use is essential for maximizing patient benefit.
- Further research into biomarkers and resistance is needed to refine MCL-1 targeted therapies.
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