蛋白质精氨酸甲基转移酶5
染色质
表观遗传学
癌症研究
甲基转移酶
精氨酸
机制(生物学)
生物
组蛋白
计算生物学
癌症
甲基化
核糖核酸
后生
DNA损伤
细胞生物学
疾病
DNA甲基化
生物信息学
恶性转化
化学
医学
基因表达调控
肿瘤转化
作用机理
癌细胞
作者
Joohyun Lee,Jiye Kim,Inah Hwang
标识
DOI:10.1016/j.biopha.2025.118754
摘要
Arginine methylation is increasingly recognized as a key regulatory mechanism in cancer, exerting broad influence over chromatin organization, RNA metabolism, and oncogenic signaling. Protein arginine methyltransferase 5 (PRMT5) catalyzes symmetric dimethylation of arginine residues on both histone and non-histone substrates. Through these modifications, PRMT5 modulates transcription, alternative splicing, DNA repair, and apoptosis, which collectively support malignant transformation and disease progression. Elevated expression or hyperactivation of PRMT5 has been documented across multiple cancer types, where it contributes to tumor cell survival, proliferation, metastasis, and therapeutic resistance. Early-generation inhibitors directed against the substrate-binding groove or the S-adenosylmethionine (SAM)-binding pocket demonstrated proof of mechanism but were limited by modest clinical efficacy and dose-limiting toxicities. More recently, methylthioadenosine (MTA)-cooperative inhibitors have shown enhanced selectivity in MTAP-deleted tumors by exploiting a synthetic lethal vulnerability, offering new opportunities for precision oncology. Ongoing investigations will be critical to define the therapeutic window of PRMT5 inhibition and to optimize rational combination strategies. This review provides a comprehensive overview of current insights into the oncogenic functions of PRMT5 and highlights emerging therapeutic strategies aimed at improving cancer treatment.
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