化学
等温滴定量热法
立体化学
光亲和标记
结合位点
活动站点
胸苷酸合酶
配体(生物化学)
部分
对接(动物)
生物化学
分子模型
酶
受体
护理部
外科
医学
化疗
氟尿嘧啶
作者
Yi‐Hsuan Chen,Hua–Yi Hsu,Ming-Tyng Yeh,Chen-Cheng Chen,Chang-Yu Huang,Ying-Hsuan Chung,Zee‐Fen Chang,Wei-Chen Kuo,Nei‐Li Chan,Jui–Hsia Weng,Bon‐chu Chung,Yu‐Ju Chen,Cheng‐Bang Jian,Ching-Chieh Shen,Hwan‐Ching Tai,Sheh‐Yi Sheu,Jim‐Min Fang
标识
DOI:10.1021/acs.jmedchem.6b01280
摘要
Targeting thymidylate kinase (TMPK) that catalyzes the phosphotransfer reaction for formation of dTDP from dTMP is a new strategy for anticancer treatment. This study is to understand the inhibitory mechanism of a previously identified human TMPK (hTMPK) inhibitor YMU1 (1a) by molecular docking, isothermal titration calorimetry, and photoaffinity labeling. The molecular dynamics simulation suggests that 1a prefers binding at the catalytic site of hTMPK, whereas the hTMPK inhibitors that bear pyridino[d]isothiazolone or benzo[d]isothiazolone core structure in lieu of the dimethylpyridine-fused isothiazolone moiety in 1a can have access to both the ATP-binding and catalytic sites. The binding sites of hTMPK inhibitors were validated by photoaffinity labeling and mass spectrometric studies. Taking together, 1a and its analogues stabilize the conformation of ligand-induced degradation (LID) region of hTMPK and block the catalytic site or ATP-binding site, thus attenuating the ATP binding-induced closed conformation that is required for phosphorylation of dTMP.
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