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The MYC oncogene as a cancer drug target
1Molecular Oncology, Max-Planck-Institute of Biochemistry, Am Klopferspitz 18A, D-82152 Martinsried, Germany. herme@biochem.mpg.de
Abstract:
The universal deregulation of c-myc gene expression in tumor cells suggests that this oncogene represents an attractive target for cancer therapeutic purposes. The same applies to the N-myc gene, which has a more restricted tissue specificity. Translocation (e.g., c-myc in Burkitt's lymphoma), or amplification (e.g., N-myc in neuroblastoma) of myc genes has been causally linked to tumor formation. Furthermore, the c-myc promoter integrates diverse mitogenic signalling cascades, which are constitutively activated in tumor cells, and translates them into expression of the c-MYC transcription factor, which promotes cell proliferation by regulating the expression of numerous target genes. Recent experimental data suggest, that even a brief inhibition of c-myc expression may be sufficient to permanently stop tumor growth and induce regression of tumors. Attempts to identify specific inhibitors of c-MYC/MAX dimerization have yielded promising results. In addition, downstream-target genes of c-MYC represent attractive targets for tumor therapy. Tumor cells expressing c-MYC at elevated levels are sensitized to treatment with DNA-damaging drugs. In mice and presumably also in human patients, the successful treatment of c-myc-induced tumors with conventional chemotherapy depends on the presence of functional p53. Therefore, restoration of this pathway, which is commonly lost in cancer cells, may enhance therapy of c-myc-induced tumors. These and other recent developments, which address the use of myc genes as therapeutic targets for cancer treatment, are discussed in this review.
Insights
Targeting the c-myc oncogene, crucial in tumor growth, offers promising cancer therapeutic strategies. Inhibiting c-myc or its downstream targets may halt tumor progression and induce regression.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- The c-myc oncogene is universally deregulated in tumor cells, driving proliferation.
- Myc gene alterations (translocation, amplification) are linked to tumor formation.
- c-myc integrates mitogenic signals, promoting cell division.
Purpose of the Study:
- To review therapeutic strategies targeting myc genes in cancer treatment.
- To discuss the potential of inhibiting c-myc expression or its downstream effects.
- To explore the role of p53 in enhancing chemotherapy for c-myc-driven tumors.
Main Methods:
- Review of recent experimental data and literature.
- Analysis of therapeutic approaches targeting c-MYC/MAX dimerization.
- Investigation of downstream c-MYC target genes as therapeutic targets.
- Examination of the role of p53 in c-myc-induced tumor treatment.
Main Results:
- Inhibition of c-myc may permanently halt tumor growth and induce regression.
- Inhibitors of c-MYC/MAX dimerization show promise.
- Elevated c-MYC sensitizes tumor cells to DNA-damaging drugs.
- Functional p53 is crucial for effective chemotherapy of c-myc-induced tumors.
Conclusions:
- Myc genes are attractive targets for novel cancer therapies.
- Targeting c-myc, its interactions, or downstream pathways offers therapeutic potential.
- Restoring p53 function could improve treatment outcomes for c-myc-driven cancers.