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Attacking c-Myc: targeted and combined therapies for cancer
Huilin Huang, Hengyou Weng, Hui Zhou
1Guangzhou 510275, P.R. China. lsszh@mail.sysu.edu.cn.
Abstract:
The onset of cancer is a complex process that is driven by the accumulation of multiple genetic mutations. However, the fact that inhibition of a single oncogene can impair the proliferation and survival of cancer cells due to their "oncogene addiction" provides implications for the so-called "molecular targeted therapy" in cancer treatment. The oncogenic transcription factor c-Myc is overexpressed in many types of cancers, and as a typical oncogene to which many cancers are addicted, c-Myc is necessary for the rapid proliferation of cancer cells. Strategies aimed at targeting c-Myc, including interfering with c-Myc synthesis, stability and transcriptional activity, have emerged as effective cancer treatments. We have recently shown that a natural agent, oridonin, promotes the Fbw7-mediated proteasomal degradation of c-Myc, leading to subsequent cell growth inhibition and apoptosis and demonstrating a new c-Myc-targeting strategy. Despite the effectiveness of molecular targeting in cancer treatment, failure to achieve long-lasting efficacy with a single agent is observed because cancer cells can recover from oncogene addiction as a result of their genomic instability and heterogeneity. Combined cancer therapies were therefore developed and showed better efficacies than single-agent therapy in cancer cell lines and mouse models. Combined therapy based on c-Myc targeting can be achieved through various strategies. Agents that also target c-Myc but use different mechanisms, or agents that act on other genes in the c-Myc pathway, can be selected for combination. In addition, the targeting of genes involved in different cellular processes in other pathways might also be a successful strategy. Regardless of the therapy adopted, it is important to first determine the molecular mechanisms underlying the agents to inform the therapy design. Among the various targets of therapeutic agents is a family of noncoding small RNAs, called microRNAs, that have been implicated in the anti-cancer activity of many therapeutic agents. c-Myc, as a transcription factor, regulates the expression of many microRNAs and is in turn regulated by microRNAs. Combining c-Myc-targeting agents with those that target microRNAs might provide a novel approach for cancer therapy.
Insights
Targeting the oncogenic transcription factor c-Myc offers a promising strategy for cancer treatment. A natural agent, oridonin, degrades c-Myc, inhibiting cancer cell growth and promoting apoptosis, paving the way for novel therapies.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Cancer develops from accumulated genetic mutations, with some cancers relying on specific oncogenes like c-Myc for survival and proliferation.
- Oncogene addiction highlights the potential of molecular targeted therapy, focusing on inhibiting critical oncogenes such as c-Myc.
- Overexpression of c-Myc is common in many cancers, making it a key target for therapeutic intervention.
Purpose of the Study:
- To explore novel strategies for targeting the oncogenic transcription factor c-Myc in cancer treatment.
- To investigate the potential of natural agents, like oridonin, in degrading c-Myc and inhibiting cancer cell growth.
- To evaluate the efficacy of combined cancer therapies, including those targeting c-Myc and microRNAs, for improved treatment outcomes.
Main Methods:
- Investigated the mechanism of oridonin in promoting Fbw7-mediated proteasomal degradation of c-Myc.
- Assessed the impact of c-Myc targeting on cancer cell proliferation and apoptosis.
- Reviewed strategies for combined cancer therapies involving c-Myc targeting agents and other therapeutic modalities, including microRNA-based approaches.
Main Results:
- Oridonin demonstrated efficacy in promoting c-Myc degradation, leading to cancer cell growth inhibition and apoptosis.
- Combined cancer therapies, particularly those involving c-Myc targeting, showed superior efficacy compared to single-agent treatments in preclinical models.
- Identified the interplay between c-Myc and microRNAs as a potential target for novel combination therapies.
Conclusions:
- Targeting c-Myc, a critical oncogene, is a viable strategy for cancer therapy, with natural agents like oridonin offering a new approach.
- Combined therapeutic strategies are essential to overcome cancer cell adaptation and genomic instability, leading to more durable treatment responses.
- The integration of c-Myc-targeting agents with microRNA-modulating therapies presents a promising avenue for developing innovative and effective cancer treatments.
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