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Published on: September 5, 2018
NO-releasing STAT3 inhibitors suppress BRAF-mutant melanoma growth
Tamer S Kaoud1, Aliaa M Mohassab2, Heba A Hassan2
1Division of Chemical Biology and Medicinal Chemistry, College of Pharmacy, The University of Texas at Austin, Austin, TX, 78712, USA.
Abstract:
Constitutive activation of STAT3 can play a vital role in the development of melanoma. STAT3-targeted therapeutics are reported to show efficacy in melanomas harboring the BRAFV600E mutant and also in vemurafenib-resistant melanomas. We designed and synthesized a series of substituted nitric oxide (NO)-releasing quinolone-1,2,4-triazole/oxime hybrids, hypothesizing that the introduction of a STAT3 binding scaffold would augment their cytotoxicity. All the hybrids tested showed a comparable level of in vitro NO production. 7b and 7c exhibited direct binding to the STAT3-SH domain with IC50 of ∼ 0.5 μM. Also, they abrogated STAT3 tyrosine phosphorylation in several cancer cell lines, including the A375 melanoma cell line that carries the BRAFV600E mutation. At the same time, they did not affect the phosphorylation of upstream kinases or other STAT isoforms. 7c inhibited STAT3 nuclear translocation in mouse embryonic fibroblast while 7b and 7c inhibited STAT3 DNA-binding activity in the A375 cell line. Their anti-proliferating activity is attributed to their ability to trigger the production of reactive oxygen species and induce G1 cell cycle arrest in the A375 cell line. Interestingly, 7b and 7c showed robust cell growth suppression and apoptosis induction in two pairs of BRAF inhibitor-naïve (-S) and resistant (-R) melanoma cell lines containing a BRAF V600E mutation. Surprisingly, MEL1617-R cells that are known to be more resistance to MEK inhibition by GSK1120212 than MEL1617-S cells exhibit a similar response to 7b and 7c.
Insights
New STAT3-targeted hybrids show potent anti-melanoma activity. These nitric oxide (NO)-releasing compounds effectively inhibit STAT3 signaling and induce cell death in both BRAFV600E mutant and resistant melanoma cells.
Area of Science:
- Medicinal Chemistry
- Oncology
- Molecular Biology
Background:
- Constitutive activation of STAT3 is crucial in melanoma development.
- STAT3 inhibitors demonstrate efficacy against BRAFV600E mutant and vemurafenib-resistant melanomas.
Purpose of the Study:
- To design and synthesize novel nitric oxide (NO)-releasing quinolone-1,2,4-triazole/oxime hybrids.
- To evaluate the potential of these hybrids as STAT3-targeted therapeutics for melanoma.
Main Methods:
- Synthesis of NO-releasing quinolone-1,2,4-triazole/oxime hybrids.
- In vitro assessment of NO production and STAT3 binding.
- Analysis of STAT3 phosphorylation, nuclear translocation, and DNA-binding activity.
- Evaluation of anti-proliferative, cell cycle arrest, and apoptosis-inducing effects.
Main Results:
- Compounds 7b and 7c showed direct binding to the STAT3-SH domain (IC50 ~0.5 μM).
- They effectively abrogated STAT3 tyrosine phosphorylation and inhibited STAT3 nuclear translocation and DNA-binding activity in melanoma cells.
- 7b and 7c induced reactive oxygen species production, G1 cell cycle arrest, cell growth suppression, and apoptosis.
- These hybrids demonstrated significant efficacy in both BRAF inhibitor-naïve and resistant melanoma cell lines.
Conclusions:
- Novel NO-releasing quinolone-1,2,4-triazole/oxime hybrids are effective STAT3 inhibitors.
- Compounds 7b and 7c exhibit potent anti-melanoma activity, overcoming resistance mechanisms.
- These hybrids represent promising candidates for melanoma treatment.
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