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Updated: Nov 19, 2025

Defining Gene Functions in Tumorigenesis by Ex vivo Ablation of Floxed Alleles in Malignant Peripheral Nerve Sheath Tumor Cells
Published on: August 25, 2021
MYC as a target for cancer treatment
Michael J Duffy1, Shane O'Grady2, Minhong Tang2
1UCD School of Medicine, Conway Institute of Biomolecular and Biomedical Research, University College Dublin, Dublin 4, Ireland; UCD Clinical Research Centre, St. Vincent's University Hospital, Dublin 4, Ireland.
Abstract:
The MYC gene which consists of 3 paralogs, C-MYC, N-MYC and L-MYC, is one of the most frequently deregulated driver genes in human cancer. Because of its high prevalence of deregulation and its causal role in cancer formation, maintenance and progression, targeting MYC is theoretically an attractive strategy for treating cancer. As a potential anticancer target, MYC was traditionally regarded as undruggable due to the absence of a suitable pocket for high-affinity binding by low molecular weight inhibitors. In recent years however, several compounds that directly or indirectly inhibit MYC have been shown to have anticancer activity in preclinical tumor models. Amongst the most detailed investigated strategies for targeting MYC are inhibition of its binding to its obligate interaction partner MAX, prevention of MYC expression and blocking of genes exhibiting synthetic lethality with overexpression of MYC. One of the most extensively investigated MYC inhibitors is a peptide/mini-protein known as OmoMYC. OmoMYC, which acts by blocking the binding of all 3 forms of MYC to their target promoters, has been shown to exhibit anticancer activity in a diverse range of preclinical models, with minimal side effects. Based on its broad efficacy and limited toxicity, OmoMYC is currently being developed for evaluation in clinical trials. Although no compound directly targeting MYC has yet progressed to clinical testing, APTO-253, which partly acts by decreasing expression of MYC, is currently undergoing a phase I clinical trial in patients with relapsed/refractory acute myeloid leukemia or myelodysplastic syndrome.
Insights
Targeting the MYC gene, a key driver in human cancers, shows promise. Novel inhibitors like OmoMYC demonstrate anticancer activity in preclinical models with minimal side effects, paving the way for clinical trials.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- The MYC gene family (C-MYC, N-MYC, L-MYC) is frequently deregulated in human cancers.
- MYC's role in cancer initiation and progression makes it an attractive therapeutic target.
- Historically, MYC was considered 'undruggable' due to its lack of a binding pocket for small molecule inhibitors.
Purpose of the Study:
- To review strategies for targeting MYC in cancer therapy.
- To highlight the potential of novel MYC inhibitors, such as OmoMYC, in preclinical settings.
- To discuss the development status of MYC-targeting agents, including OmoMYC and APTO-253.
Main Methods:
- Review of preclinical data on MYC inhibitors.
- Analysis of therapeutic strategies including MAX binding inhibition, MYC expression prevention, and synthetic lethality.
- Evaluation of OmoMYC's mechanism of action and preclinical efficacy.
- Assessment of APTO-253's clinical trial status.
Main Results:
- Several compounds targeting MYC directly or indirectly have shown anticancer activity in preclinical models.
- OmoMYC effectively inhibits all three MYC paralogs by blocking promoter binding, exhibiting broad anticancer efficacy with minimal toxicity.
- APTO-253, a compound that reduces MYC expression, is in a Phase I clinical trial.
Conclusions:
- Targeting MYC represents a promising strategy for cancer treatment.
- OmoMYC demonstrates significant potential as a novel anticancer therapeutic due to its efficacy and safety profile.
- Ongoing clinical trials for MYC-targeting agents like APTO-253 indicate progress in translating these strategies into clinical practice.
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