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Continuous Fluorescence-Based Endonuclease-Coupled DNA Methylation Assay to Screen for DNA Methyltransferase Inhibitors
Published on: August 5, 2022
Small-molecule inhibitors of the Myc oncoprotein
Steven Fletcher1, Edward V Prochownik2
1Department of Pharmaceutical Sciences, University of Maryland School of Pharmacy, Baltimore, USA; University of Maryland Greenebaum Cancer Center, Baltimore, USA.
Abstract:
The c-Myc (Myc) oncoprotein is among the most attractive of cancer targets given that it is de-regulated in the majority of tumors and that its inhibition profoundly affects their growth and/or survival. However, its role as a seldom-mutated transcription factor, its lack of enzymatic activity for which suitable pharmaceutical inhibitors could be crafted and its expression by normal cells have largely been responsible for its being viewed as "undruggable". Work over the past several years, however, has begun to reverse this idea by allowing us to view Myc within the larger context of global gene regulatory control. Thus, Myc and its obligate heterodimeric partner, Max, are integral to the coordinated recruitment and post-translational modification of components of the core transcriptional machinery. Moreover, Myc over-expression re-programs numerous critical cellular functions and alters the cell's susceptibility to their inhibition. This new knowledge has therefore served as a framework upon which to develop new pharmaceutical approaches. These include the continuing development of small molecules which act directly to inhibit the critical Myc-Max interaction, those which act indirectly to prevent Myc-directed post-translational modifications necessary to initiate productive transcription and those which inhibit vital pathways upon which the Myc-transformed cell is particularly reliant. This article is part of a Special Issue entitled: Myc proteins in cell biology and pathology.
Insights
The c-Myc oncoprotein, a key cancer target, is being re-evaluated as "druggable." New strategies target Myc-Max interactions and Myc-driven pathways in cancer therapy.
Area of Science:
- Molecular biology
- Oncology
- Drug discovery
Background:
- The c-Myc (Myc) oncoprotein is frequently deregulated in cancers, impacting tumor growth and survival.
- Myc's role as a transcription factor with no enzymatic activity and its expression in normal cells have historically labeled it "undruggable."
Purpose of the Study:
- To re-evaluate Myc as a viable cancer target by understanding its role in global gene regulation.
- To outline emerging pharmaceutical strategies for targeting Myc and Myc-driven pathways in cancer.
Main Methods:
- Analysis of Myc's role in transcriptional machinery recruitment and post-translational modifications.
- Review of novel therapeutic approaches targeting Myc-Max interactions and Myc-dependent cellular functions.
Main Results:
- Myc and its partner Max are crucial for transcriptional machinery regulation.
- Myc overexpression reprograms cellular functions, creating dependencies exploitable for therapy.
Conclusions:
- Emerging knowledge reframes Myc as a druggable target.
- New pharmaceutical strategies include small molecules inhibiting Myc-Max interaction, post-translational modifications, and Myc-reliant pathways.
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