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Nuclear Receptor Coactivator NCOA3 Regulates UV Radiation-Induced DNA Damage and Melanoma Susceptibility
David de Semir1,2, Vladimir Bezrookove1,2, Mehdi Nosrati1,2
1Center for Melanoma Research and Treatment, California Pacific Medical Center Research Institute, San Francisco, California.
Abstract:
Melanoma occurs as a consequence of inherited susceptibility to the disease and exposure to UV radiation (UVR) and is characterized by uncontrolled cellular proliferation and a high mutational load. The precise mechanisms by which UVR contributes to the development of melanoma remain poorly understood. Here we show that activation of nuclear receptor coactivator 3 (NCOA3) promotes melanomagenesis through regulation of UVR sensitivity, cell-cycle progression, and circumvention of the DNA damage response (DDR). Downregulation of NCOA3 expression, either by genetic silencing or small-molecule inhibition, significantly suppressed melanoma proliferation in melanoma cell lines and patient-derived xenografts. NCOA3 silencing suppressed expression of xeroderma pigmentosum C and increased melanoma cell sensitivity to UVR. Suppression of NCOA3 expression led to activation of DDR effectors and reduced expression of cyclin B1, resulting in G2-M arrest and mitotic catastrophe. A SNP in NCOA3 (T960T) reduced NCOA3 protein expression and was associated with decreased melanoma risk, given a significantly lower prevalence in a familial melanoma cohort than in a control cohort without cancer. Overexpression of wild-type NCOA3 promoted melanocyte survival following UVR and was accompanied by increased levels of UVR-induced DNA damage, both of which were attenuated by overexpression of NCOA3 (T960T). These results describe NCOA3-regulated pathways by which melanoma can develop, with germline NCOA3 polymorphisms enabling enhanced melanocyte survival in the setting of UVR exposure, despite an increased mutational burden. They also identify NCOA3 as a novel therapeutic target for melanoma. SIGNIFICANCE: This study explores NCOA3 as a regulator of the DDR and a therapeutic target in melanoma, where activation of NCOA3 contributes to melanoma development following exposure to ultraviolet light.
Insights
Nuclear receptor coactivator 3 (NCOA3) activation promotes melanoma development by affecting UV radiation sensitivity and DNA damage response. Inhibiting NCOA3 suppressed melanoma growth, identifying it as a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Melanoma development involves genetic susceptibility and UV radiation (UVR) exposure.
- Mechanisms linking UVR to melanoma pathogenesis are not fully understood.
- Uncontrolled cell proliferation and high mutation rates characterize melanoma.
Purpose of the Study:
- Investigate the role of nuclear receptor coactivator 3 (NCOA3) in melanoma development.
- Elucidate NCOA3's function in regulating UVR sensitivity, cell cycle, and DNA damage response (DDR).
- Identify NCOA3 as a potential therapeutic target for melanoma.
Main Methods:
- Genetic silencing and small-molecule inhibition of NCOA3.
- Assessing melanoma cell proliferation in cell lines and patient-derived xenografts.
- Analyzing NCOA3's effect on DNA damage response pathways, including xeroderma pigmentosum C and G2-M arrest.
- Investigating the impact of NCOA3 single nucleotide polymorphism (SNP) T960T on melanoma risk and UVR sensitivity.
Main Results:
- NCOA3 activation promotes melanomagenesis by regulating UVR sensitivity, cell cycle, and DDR.
- NCOA3 downregulation suppressed melanoma proliferation and increased sensitivity to UVR.
- NCOA3 suppression activated DDR effectors, induced G2-M arrest, and led to mitotic catastrophe.
- A specific NCOA3 SNP (T960T) was associated with reduced melanoma risk and attenuated NCOA3 function.
Conclusions:
- NCOA3 plays a critical role in melanoma development by modulating responses to UVR and DNA damage.
- Germline NCOA3 polymorphisms can influence melanocyte survival under UVR stress.
- NCOA3 represents a promising therapeutic target for melanoma treatment.
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