化学
过氧化物酶体增殖物激活受体
模仿
立体化学
分子模拟
受体
组合化学
生物化学
抗体
生态学
生物
免疫学
作者
Keisuke Yamamoto,Tomohiro Tamura,Kazuki Henmi,Takeshi Kuboyama,Arata Yanagisawa,Masahiro Matsubara,Yuichi Takahashi,Michihiko Suzuki,Junichi Saito,Kimihisa Ueno,Satoshi Shuto
标识
DOI:10.1021/acs.jmedchem.8b01200
摘要
A novel class of PPARγ ligand 1 (EC50 = 197 nM) with a dibenzoazepin scaffold was identified through high-throughput screening campaign. To avoid the synthetically troublesome chiral center of 1, its conformational analysis using the MacroModel was conducted, focusing on conformational flip of the tricyclic ring and the conformational restriction by the methyl group at the chiral center. On the basis of this analysis, scaffold hopping of dibenzoazepine into dibenzo[ b, e]oxepine by replacing the chiral structures with the corresponding olefinic E/ Z isomers was performed. Consequently, dibenzo[ b, e]oxepine scaffold 9 was developed showing extremely potent PPARγ reporter activity (EC50 = 2.4 nM, efficacy = 9.5%) as well as differentiation-inducing activity against a gastric cancer cell line MKN-45 that was more potent than any other well-known PPARγ agonists in vitro (94% at 30 nM). The X-ray crystal structure analysis of 9 complexed with PPARγ showed that it had a unique binding mode to PPARγ ligand-binding domain that differed from that of any other PPARγ agonists identified thus far.
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