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The CUL4A ubiquitin ligase is a potential therapeutic target in skin cancer and other malignancies 被引量:5

The CUL4A ubiquitin ligase is a potential therapeutic target in skin cancer and other malignancies
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摘要 Cullin 4A(CUL4A)is an E3 ubiquitin ligase that directly affects DNA repair and cell cycle progression by targeting substrates including damage-specific DNA-binding protein 2(DDB2),xeroderma pigmentosum complementation group C(XPC),chromatin licensing and DNA replication factor 1(Cdt1),and p21.Recent work from our laboratory has shown that Cul4a-deficient mice have greatly reduced rates of ultraviolet-induced skin carcinomas.On a cellular level,Cul4a-deficient cells have great capacity for DNA repair and demonstrate a slow rate of proliferation due primarily to increased expression of DDB2 and p21,respectively.This suggests that CUL4A promotes tumorigenesis(as well as accumulation of skin damage and subsequent premature aging)by limiting DNA repair activity and expediting S phase entry.In addition,CUL4A has been found to be up-regulated via gene amplification or overexpression in breast cancers,hepatocellular carcinomas,squamous cell carcinomas,adrenocortical carcinomas,childhood medulloblastomas,and malignant pleural mesotheliomas.Because of its oncogenic activity in skin cancer and up-regulation in other malignancies,CUL4A has arisen as a potential candidate for targeted therapeutic approaches.In this review,we outline the established functions of CUL4A and discuss the E3ligase’s emergence as a potential driver of tumorigenesis. Cullin 4A (CUL4A) is an E3 ubiquitin ligase that directly affects DNA repair and cell cycle progression by targeting substrates including damage-specific DNA-binding protein 2 (DDB2), xeroderma pigmentosum complementation group C (XPC), chromatin licensing and DNA replication factor 1 (Cdtl), and p21. Recent work from our laboratory has shown that Cul4a-deficient mice have greatly reduced rates of ultraviolet-induced skin carcinomas. On a cellular level, Cul4a-deficient cells have great capacity for DNA repair and demonstrate a slow rate of proliferation due primarily to increased expression of DDB2 and p21, respectively. This suggests that CUL4A promotes tumorigenesis (as well as accumulation of skin damage and subsequent premature aging) by limiting DNA repair activity and expediting S phase entry. In addition, CUL4A has been found to be up-regulated via gene amplification or overexpression in breast cancers, hepatocellular carcinomas, squamous cell carcinomas, adrenocortical carcinomas, childhood medulloblastomas, and malignant pleural mesotheliomas. Because of its oncogenic activity in skin cancer and up-regulation in other malignancies, CUL4A has arisen as a potential candidate for targeted therapeutic approaches. In this review, we outline the established functions of CUL4A and discuss the E3 ligase's emergence as a potential driver of tumorigenesis.
出处 《Chinese Journal of Cancer》 SCIE CAS CSCD 2013年第9期478-482,共5页
基金 supported by grants from National Institutes of Health Grant(No.CA098210) the Natural Science Foundation of China(No.30901754) the Tianjin City Thousand Person Plan grants supported in part by a Ruth L.Kirschstein National Service Award(NRSA) Institutional Research Training Grant(No.T32GM008539)
关键词 泛素连接酶 恶性肿瘤 皮肤癌 治疗 DNA修复 DNA结合蛋白 靶点 细胞水平 Ubiquitination, cullins, DNA damage, cell cycle regulation, skin cancer, therapeutic targets
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