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首页> 外文期刊>Bioorganic and medicinal chemistry >Computer based design, synthesis and biological evaluation of novel indole derivatives as HCV NS3-4A serine protease inhibitors.
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Computer based design, synthesis and biological evaluation of novel indole derivatives as HCV NS3-4A serine protease inhibitors.

机译:基于计算机的新型吲哚衍生物作为HCV NS3-4A丝氨酸蛋白酶抑制剂的设计,合成和生物学评估。

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摘要

A series of novel indoles were designed and their molecular modeling simulation study including fitting to a 3D pharmacophore model using CATALYST program and their docking into the NS3 active site was examined as HCV NS3 protease inhibitor. Several compounds showed significant high simulation docking score and fit values. The designed compounds were synthesized and biologically evaluated in vitro using an NS3 protease binding assay, where compounds 10a-k showed significant inhibitory activity (> or =67% inhibition at 100 microg/mL). Of these, compounds 10c and 10f demonstrated potent HCV NS3 protease inhibitors with IC(50) values of 15 and 13 microM, respectively. Enantio-selective Michael addition of an indole derivative in the presence of catalytic amount of AlCl(3) and quinine at room temperature afforded the adduct 7e in excellent yield with 73% ee. The product was converted into 10l, which showed lower activity than the mixture of the corresponding diastereoisomers.
机译:设计了一系列新颖的吲哚,并使用CATALYST程序对包括3D药效团模型的拟合以及它们与NS3活性位点的对接作为HCV NS3蛋白酶抑制剂进行了分子建模模拟研究。几种化合物显示出很高的模拟对接得分和拟合值。合成了设计的化合物,并使用NS3蛋白酶结合测定法在体外进行了生物学评估,其中化合物10a-k显示出显着的抑制活性(在100微克/毫升处抑制率≥67%)。其中,化合物10c和10f表现出有效的HCV NS3蛋白酶抑制剂,其IC(50)值分别为15和13 microM。在室温下,在催化量的AlCl(3)和奎宁的存在下,吲哚衍生物的对映选择性迈克尔加成反应,以73%ee的优异收率得到加合物7e。将产物转化为10l,其显示出比相应的非对映异构体的混合物更低的活性。

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