蛋氨酸
蛋氨酸腺苷转移酶
甲基化
甲基转移酶
癌变
癌症研究
医学
癌症
DNA甲基化
转移酶
生物化学
生物
酶
基因
DNA
基因表达
氨基酸
内科学
作者
Jiamin Guo,Yanzhong Yang,Ralf Buettner,Steven T. Rosen
出处
期刊:Current Opinion in Oncology
[Ovid Technologies (Wolters Kluwer)]
日期:2022-07-05
卷期号:34 (5): 546-551
被引量:17
标识
DOI:10.1097/cco.0000000000000870
摘要
Purpose of review In this review, we summarize the biological roles of methionine, methionine adenosyl transferase 2A (MAT2A) and S -adenosyl methionine (SAM) in methylation reactions during tumorigenesis. Newly emerged inhibitors targeting the methionine−MAT2A−SAM axis will be discussed. Recent findings SAM is the critical and global methyl-donor for methylation reactions regulating gene expression, and in mammalian cells, it is synthesized by MAT2A using methionine. Recent studies have validated methionine and MAT2A as metabolic dependencies of cancer cells because of their essential roles in SAM biosynthesis. MAT2A inhibition leads to synthetic lethality in methylthioadenosine-phosphorylase (MTAP)-deleted cancers, which accounts for 15% of all cancer types. Of note, remarkable progress has been made in developing inhibitors targeting the methionine−MAT2A−SAM axis, as the first-in-class MAT2A inhibitors AG-270 and IDE397 enter clinical trials to treat cancer. Summary The methionine−MAT2A−SAM axis plays an important role in tumorigenesis by providing SAM as a critical substrate for abnormal protein as well as DNA and RNA methylation in cancer cells. Targeting SAM biosynthesis through MAT2A inhibition has emerged as a novel and promising strategy for cancer therapy.
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