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Recent Advances in Cancer Drug Development: Targeting Induced Myeloid Cell Leukemia-1 (Mcl-1) Differentiation Protein
Mohammad Abid1, Yogesh A Sonawane1, Jacob I Contreras1
1Eppley Institute for Research in Cancer and Allied Diseases, University of Nebraska Medical Center, Omaha, Nebraska, 68198-6805. United States.
Background:
Anti-apoptotic members of the Bcl-2 family of proteins are upregulated in a majority of cancers and are potential therapeutic targets. Fragment-based design led to the development of clinical candidates that target Bcl-xL/Bcl-2. Although these BclxL/ Bcl-2 inhibitors showed promise in pre-clinical studies, resistance to several Bcl-xL inhibitors was observed, when used alone. This is attributed to the over-expression of Mcl-1, another member of the Bcl-2 family of proteins. Indeed, Mcl-1 is highly amplified in numerous cancers, suggesting that it may contribute to malignant cell growth and evasion of apoptosis. Therefore, significant efforts have been made toward the development of direct Mcl-1 inhibitors for cancer therapy.
Methods:
Following an extensive search of peer-reviewed articles on the development of Mcl-1-selective inhibitors, the literature retrieved is chronologically arranged and discussed in this review article.
Results:
We have included 147 articles in this review; including articles that describe the development of stapled peptides with improved binding affinity as Mcl-1-selective BH3 mimetics, those describing fragment-based and structure-based design of small molecule Mcl-1 inhibitors by various research groups, and those detailing the use of natural products and their derivatives as potential Mcl-1 inhibitors.
Conclusion:
The therapeutic potential of targeting the Mcl-1 protein for cancer drug discovery is vast. Stapling BH3 peptides, as well as the development of small molecule inhibitors as BH3 mimetics, are viable strategies to develop selective Mcl-1 inhibitors. With no clinically approved candidate in hand, additional modes of perturbing the biological function of this protein will aid drug discovery efforts.
Insights
Developing Mcl-1 inhibitors is crucial for cancer therapy due to resistance to other Bcl-2 inhibitors. This review covers stapled peptides, small molecules, and natural products targeting Mcl-1.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Anti-apoptotic Bcl-2 proteins are upregulated in many cancers, presenting therapeutic targets.
- Resistance to Bcl-xL/Bcl-2 inhibitors arises from Mcl-1 overexpression, a key driver of cancer cell survival.
- Mcl-1 amplification in cancers necessitates the development of direct Mcl-1 inhibitors.
Purpose of the Study:
- To review the development of Mcl-1-selective inhibitors for cancer therapy.
- To consolidate research on various strategies for targeting Mcl-1.
Main Methods:
- Extensive literature search on Mcl-1-selective inhibitor development.
- Chronological arrangement and discussion of retrieved peer-reviewed articles.
Main Results:
- Review includes 147 articles on Mcl-1 inhibitor development.
- Stapled peptides, fragment-based, and structure-based small molecule inhibitors are discussed.
- Natural products and derivatives as potential Mcl-1 inhibitors are also detailed.
Conclusions:
- Targeting Mcl-1 holds vast therapeutic potential in cancer drug discovery.
- Stapled BH3 peptides and small molecule BH3 mimetics are viable strategies for Mcl-1 inhibition.
- Further research into novel Mcl-1 targeting mechanisms is needed due to the lack of clinically approved candidates.
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