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Identification of a Small Molecule That Overcomes HdmX-Mediated Suppression of p53
Goutam Karan1, Huaiyu Wang2, Amit Chakrabarti1
1Invenio Therapeutics, Lexington, KY.
Abstract:
Inactivation of the p53 tumor suppressor by mutation or overexpression of negative regulators occurs frequently in cancer. As p53 plays a key role in regulating proliferation or apoptosis in response to DNA-damaging chemotherapies, strategies aimed at reactivating p53 are increasingly being sought. Strategies to reactivate wild-type p53 include the use of small molecules capable of releasing wild-type p53 from key, cellular negative regulators, such as Hdm2 and HdmX. Derivatives of the Hdm2 antagonist Nutlin-3 are in clinical trials. However, Nutlin-3 specifically disrupts Hdm2-p53, leaving tumors harboring high levels of HdmX resistant to Nutlin-3 treatment. Here, we identify CTX1, a novel small molecule that overcomes HdmX-mediated p53 repression. CTX1 binds directly to HdmX to prevent p53-HdmX complex formation, resulting in the rapid induction of p53 in a DNA damage-independent manner. Treatment of a panel of cancer cells with CTX1 induced apoptosis or suppressed proliferation and, importantly, CTX1 demonstrates promising activity as a single agent in a mouse model of circulating primary human leukemia. CTX1 is a small molecule HdmX inhibitor that demonstrates promise as a cancer therapeutic candidate. Mol Cancer Ther; 15(4); 574-82. ©2016 AACR.
Insights
A novel small molecule, CTX1, reactivates the p53 tumor suppressor by inhibiting HdmX. This approach shows promise for treating cancers resistant to other therapies, including leukemia.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- p53 tumor suppressor inactivation is common in cancer.
- Reactivating p53 is a promising therapeutic strategy.
- HdmX-mediated repression of p53 limits efficacy of current p53-targeting drugs like Nutlin-3.
Purpose of the Study:
- To identify novel small molecules that can overcome HdmX-mediated p53 repression.
- To evaluate the therapeutic potential of CTX1 as an HdmX inhibitor.
Main Methods:
- Identification of CTX1, a novel small molecule inhibitor of HdmX.
- Assessment of CTX1's binding to HdmX and its effect on p53-HdmX complex formation.
- Evaluation of CTX1's efficacy in cancer cell lines and a mouse model of human leukemia.
Main Results:
- CTX1 directly binds to HdmX, preventing p53-HdmX complex formation.
- CTX1 induces p53 in a DNA damage-independent manner.
- CTX1 treatment suppressed proliferation and induced apoptosis in cancer cells and showed activity in a leukemia mouse model.
Conclusions:
- CTX1 is a novel small molecule inhibitor of HdmX.
- CTX1 effectively reactivates p53 and demonstrates anti-cancer activity.
- CTX1 holds promise as a potential therapeutic candidate for cancer treatment, particularly for HdmX-resistant tumors.
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