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Drugging the "Undruggable" MYCN Oncogenic Transcription Factor: Overcoming Previous Obstacles to Impact Childhood
Adam J Wolpaw1,2, Richard Bayliss3, Gabriele Büchel4,5
1Division of Oncology and Center for Childhood Cancer Research, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania.
Abstract:
Effective treatment of pediatric solid tumors has been hampered by the predominance of currently "undruggable" driver transcription factors. Improving outcomes while decreasing the toxicity of treatment necessitates the development of novel agents that can directly inhibit or degrade these elusive targets. MYCN in pediatric neural-derived tumors, including neuroblastoma and medulloblastoma, is a paradigmatic example of this problem. Attempts to directly and specifically target MYCN have failed due to its similarity to MYC, the unstructured nature of MYC family proteins in their monomeric form, the lack of an understanding of MYCN-interacting proteins and ability to test their relevance in vivo, the inability to obtain structural information on MYCN protein complexes, and the challenges of using traditional small molecules to inhibit protein-protein or protein-DNA interactions. However, there is now promise for directly targeting MYCN based on scientific and technological advances on all of these fronts. Here, we discuss prior challenges and the reasons for renewed optimism in directly targeting this "undruggable" transcription factor, which we hope will lead to improved outcomes for patients with pediatric cancer and create a framework for targeting driver oncoproteins regulating gene transcription.
Insights
Developing novel treatments for pediatric solid tumors is crucial. New strategies show promise for targeting the "undruggable" MYCN oncoprotein, potentially improving outcomes for children with neuroblastoma and medulloblastoma.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Pediatric solid tumors often have
Observation:
- MYCN is a key driver in pediatric neural-derived tumors, but targeting it has been challenging.
- Previous attempts to target MYCN failed due to its similarity to MYC, unstructured protein forms, and lack of understanding of its interactions.
- Difficulties in obtaining structural data and using traditional small molecules for protein-protein or protein-DNA interactions further complicated targeting.
Findings:
- Recent scientific and technological advancements offer new hope for directly targeting MYCN.
- These advances address previous limitations in understanding MYCN's structure, interactions, and druggability.
- Progress has been made in developing methods to inhibit or degrade MYCN.
Implications:
- Directly targeting MYCN could significantly improve treatment outcomes for pediatric cancers like neuroblastoma and medulloblastoma.
- This approach may lead to less toxic therapies compared to current treatments.
- The strategies developed for MYCN could serve as a framework for targeting other "undruggable" driver oncoproteins in cancer.
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