Cyclin D1 promotes radioresistance through regulation of RAD51 in melanoma

抗辐射性 细胞周期蛋白D1 雷达51 癌症研究 DNA损伤 黑色素瘤 细胞周期 细胞周期蛋白B 细胞周期蛋白D 生物 细胞周期蛋白 DNA修复 细胞周期检查点 细胞凋亡 细胞培养 DNA 遗传学
作者
Hyuntaik Im,Jeeyong Lee,Hae Jin Lee,Da Yeon Kim,Eun Ju Kim,Jae Youn Yi
出处
期刊:Experimental Dermatology [Wiley]
卷期号:32 (10): 1706-1716 被引量:3
标识
DOI:10.1111/exd.14877
摘要

Melanoma is a notoriously radioresistant type of skin cancer. Elucidation of the specific mechanisms underlying radioresistance is necessary to improve the clinical efficacy of radiation therapy. To identify the key factors contributing to radioresistance, five melanoma cell lines were selected for study and genes that were upregulated in relatively radioresistant melanomas compared with radiosensitive melanoma cells determined via RNA sequencing technology. In particular, we focused on cyclin D1 (CCND1), a well known cell cycle regulatory molecule. In radiosensitive melanoma, overexpression of cyclin D1 reduced apoptosis. In radioresistant melanoma cell lines, suppression of cyclin D1 with a specific inhibitor or siRNA increased apoptosis and decreased cell proliferation in 2D and 3D spheroid cultures. In addition, we observed increased expression of γ-H2AX, a molecular marker of DNA damage, even at a later time after γ-irradiation, under conditions of inhibition of cyclin D1, with a response pattern similar to that of radiosensitive SK-Mel5. In the same context, expression and nuclear foci formation of RAD51, a key enzyme for homologous recombination (HR), were reduced upon inhibition of cyclin D1. Downregulation of RAD51 also reduced cell survival to irradiation. Overall, suppression of cyclin D1 expression or function led to reduced radiation-induced DNA damage response (DDR) and triggered cell death. Our collective findings indicate that the presence of increased cyclin D1 potentially contributes to the development of radioresistance through effects on RAD51 in melanoma and could therefore serve as a therapeutic target for improving the efficacy of radiation therapy.

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