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MYC and KRAS cooperation: from historical challenges to therapeutic opportunities in cancer
Sílvia Casacuberta-Serra1, Íñigo González-Larreategui2, Daniel Capitán-Leo2
1Peptomyc S.L., Barcelona, Spain. scasacuberta@peptomyc.com.
Abstract:
RAS and MYC rank amongst the most commonly altered oncogenes in cancer, with RAS being the most frequently mutated and MYC the most amplified. The cooperative interplay between RAS and MYC constitutes a complex and multifaceted phenomenon, profoundly influencing tumor development. Together and individually, these two oncogenes regulate most, if not all, hallmarks of cancer, including cell death escape, replicative immortality, tumor-associated angiogenesis, cell invasion and metastasis, metabolic adaptation, and immune evasion. Due to their frequent alteration and role in tumorigenesis, MYC and RAS emerge as highly appealing targets in cancer therapy. However, due to their complex nature, both oncogenes have been long considered "undruggable" and, until recently, no drugs directly targeting them had reached the clinic. This review aims to shed light on their complex partnership, with special attention to their active collaboration in fostering an immunosuppressive milieu and driving immunotherapeutic resistance in cancer. Within this review, we also present an update on the different inhibitors targeting RAS and MYC currently undergoing clinical trials, along with their clinical outcomes and the different combination strategies being explored to overcome drug resistance. This recent clinical development suggests a paradigm shift in the long-standing belief of RAS and MYC "undruggability", hinting at a new era in their therapeutic targeting.
Insights
RAS and MYC are key cancer-driving oncogenes. New therapies targeting these previously "undruggable" targets show promise in overcoming cancer
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- RAS and MYC are frequently altered oncogenes in cancer, driving tumor development.
- They regulate critical cancer hallmarks, including immune evasion and metastasis.
- Historically, RAS and MYC were considered undruggable cancer targets.
Purpose of the Study:
- To review the complex interplay between RAS and MYC in cancer.
- To highlight their role in creating an immunosuppressive tumor microenvironment.
- To update on clinical trials of RAS and MYC inhibitors and combination strategies.
Main Methods:
- Literature review of oncogene function and cancer hallmarks.
- Analysis of current clinical trial data for RAS and MYC inhibitors.
- Exploration of therapeutic strategies to overcome resistance.
Main Results:
- RAS and MYC collaborate to promote tumor development and immune evasion.
- Several inhibitors targeting RAS and MYC are in clinical trials.
- Combination strategies are being explored to enhance efficacy and overcome resistance.
Conclusions:
- Targeting RAS and MYC is transitioning from undruggable to achievable.
- Recent clinical developments indicate a new era for oncogene-targeted cancer therapy.
- Understanding the RAS-MYC partnership is crucial for effective cancer treatment.
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