化学
肝细胞癌
体内
癌症研究
体外
酶抑制剂
结构-活动关系
药理学
基质(水族馆)
细胞培养
酶
癌
肝癌
生物活性
铅化合物
细胞生长
底物特异性
离体
作者
Hao Yin,Xiaowen Yan,Bo Fan,Xiangye Kong,Congying Gu,Wang Zhou,Shiping Xu,Zenglin Yin,Min Zhang,Youchen Wang,Hongyan Liu,Junli Feng,Lei Ge,Jiacheng Li,Tangtai Dong,Yong Yang,Dayong Zhang,Beiying Dai,Menghan Zhang
标识
DOI:10.1021/acs.jmedchem.6c02080
摘要
Abstract Beta-1,3-glucuronosyltransferase (B3GAT3) is overexpressed in hepatocellular carcinoma (HCC) and correlates with poor prognosis, serving as a desirable anti-HCC target. Based on our micromolar lead TMLB-C16 (IC50 = 6.22−6.53 μM, KD = 3.96 μM), 60 novel derivatives were designed via systematic structure−activity relationship optimization. The optimized candidate TMLB-G9 is the first nanomolar B3GAT3 inhibitor bearing a 6-methoxyquinoline-4-carboxamide scaffold. It exhibits stronger B3GAT3 binding affinity (KD = 0.72 μM) than both TMLB-C16 and natural substrate UDP-GlcUA (KD = 1.32 μM). TMLB-G9 exhibits potent antiproliferative activity against Huh7 and Hep3B cells (IC50 = 0.31−0.36 μM) and broad-spectrum antitumor efficacy. It suppresses HCC colony formation, migration, and invasion, while inducing G0/G1 arrest and apoptosis. With good in vivo tolerance and safety, TMLB-G9 exhibited superior anti-HCC activity to TMLB-C16 in two HCC xenograft models. In conclusion, TMLB-G9 is a promising B3GAT3 inhibitor worthy of further development for HCC therapy.
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