化学
癌变
共价键
癌症研究
生物化学
立体化学
细胞培养
酶抑制剂
结构-活动关系
发病机制
细胞生物学
共价结合
人体乳房
乳腺癌
体外
酶
信号转导
分子生物学
作者
Min Shao,Ruining Li,J B Hu,Wenjie Xi,Raghupathi Mutyala,Lulu Guan,Chaoqun Huang,Renhong Sun,Xiaobao Yang,靳博,Bo Zhao,Er‐Jun Hao,Zhimin Zhang,Lin Li,Xufen Yu,Mingyan Zhu,Yudao Shen
标识
DOI:10.1021/acs.jmedchem.6c00262
摘要
Dysregulation of PRMT1, a key epigenetic enzyme, is strongly implicated in breast cancer pathogenesis. However, developing selective PRMT1 inhibitors has been challenging due to the high conservation of the catalytic domain across PRMT family members. We herein report 17zh (MS3–123), the first small-molecule, nanomolar covalent inhibitor targeting the unique Cys119 within the SAM-binding pocket of PRMT1 (IC 50 = 11.4 nM) with over 17–96-fold selectivity against other type I PRMTs subfamily and >439-fold selectivity against type II PRMT5. 17zh selectively engages Cys119, inhibiting PRMT1 activity at both enzymatic and cellular levels. Functionally, 17zh suppressed breast cancer cell proliferation, migration, invasion, induced cell cycle arrest and apoptosis, and impaired tumor growth in vivo in the MDA-MB-231-xenograft model. Our findings establish 17zh as both a valuable chemical probe for PRMT1 research and a promising lead candidate for breast cancer treatment, highlighting the potential of covalent targeting for selective epigenetic drug discovery.
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