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Published on: August 23, 2019
Strategies to Inhibit Myc and Their Clinical Applicability
Jonathan R Whitfield1, Marie-Eve Beaulieu2, Laura Soucek3
1Vall d'Hebron Institute of Oncology, Edifici Cellex, Hospital Vall d'Hebron Barcelona, Spain.
Abstract:
Myc is an oncogene deregulated in most-perhaps all-human cancers. Each Myc family member, c-, L-, and N-Myc, has been connected to tumor progression and maintenance. Myc is recognized as a "most wanted" target for cancer therapy, but has for many years been considered undruggable, mainly due to its nuclear localization, lack of a defined ligand binding site, and physiological function essential to the maintenance of normal tissues. The challenge of identifying a pharmacophore capable of overcoming these hurdles is reflected in the current absence of a clinically-viable Myc inhibitor. The first attempts to inhibit Myc used antisense technology some three decades ago, followed by small molecule inhibitors discovered through "classical" compound library screens. Notable breakthroughs proving the feasibility of systemic Myc inhibition were made with the Myc dominant negative mutant Omomyc, showing both the great promise in targeting this infamous oncogene for cancer treatment as well as allaying fears about the deleterious side effects that Myc inhibition might have on normal proliferating tissues. During this time many other strategies have appeared in an attempt to drug the undruggable, including direct and indirect targeting, knockdown, protein/protein and DNA interaction inhibitors, and translation and expression regulation. The inhibitors range from traditional small molecules to natural chemicals, to RNA and antisense, to peptides and miniproteins. Here, we briefly describe the many approaches taken so far, with a particular focus on their potential clinical applicability.
Insights
Targeting the Myc oncogene, crucial in many cancers, is challenging but feasible. Novel therapeutic strategies, including Omomyc, show promise for effective cancer treatment with manageable side effects.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Myc is a critical oncogene implicated in the progression and maintenance of most human cancers.
- Its nuclear localization, lack of a ligand-binding site, and essential physiological roles make Myc a difficult therapeutic target.
- Despite these challenges, Myc remains a highly sought-after target for cancer therapy.
Purpose of the Study:
- To review diverse strategies developed for inhibiting the Myc oncogene.
- To assess the clinical applicability and potential of various Myc-targeting approaches.
- To highlight breakthroughs in overcoming the
Main Methods:
- Review of historical and current Myc inhibition strategies.
- Analysis of different therapeutic modalities including antisense technology, small molecules, dominant-negative mutants, and RNA-based approaches.
- Evaluation of direct and indirect targeting, protein/protein and DNA interaction inhibition, and regulation of translation and expression.
Main Results:
- Early attempts using antisense technology and small molecule screens demonstrated initial feasibility.
- The Myc dominant-negative mutant Omomyc showed significant promise for systemic Myc inhibition.
- Various inhibitors, including small molecules, natural products, RNA, peptides, and miniproteins, have been developed.
Conclusions:
- Targeting Myc, despite its 'undruggable' status, is achievable through diverse therapeutic strategies.
- Approaches like Omomyc offer hope for effective cancer treatment by inhibiting Myc.
- Continued research into these varied methods is crucial for developing clinically viable Myc inhibitors.
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