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HIV-1 integrase strand-transfer inhibitors: design, synthesis and molecular modeling investigation.

机译:HIV-1整合酶链转移抑制剂:设计,合成和分子模型研究。

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摘要

This study is focused on a new series of benzylindole derivatives with various substituents at the benzene-fused ring, suggested by our 3D pharmacophore model developed for HIV-1 integrase inhibitors (INIs). All synthesized compounds proved to be active in the nanomolar range (6-35 nM) on the strand-transfer step (ST). In particular, derivative 4-[1-(4-fluorobenzyl)-5,7-dimethoxy-1H-indol-3-yl]-2-hydroxy-4-oxobut-2-enoic acid (8e), presenting the highest best-fit value on pharmacophore model, showed a potency comparable to that of clinical INSTIs GS 9137 (1) and MK-0518 (2). The binding mode of our molecules has been investigated using the recently published crystal structure of the complex of full-length integrase from the prototype foamy virus in complex with its cognate DNA (PFV-IN/DNA). The results highlighted the ability of derivative 8e to assume the same binding mode of MK-0518 and GS 9137.
机译:这项研究的重点是针对苯环稠合环上具有各种取代基的一系列苄基吲哚衍生物,这是针对HIV-1整合酶抑制剂(INIs)开发的3D药效团模型所建议的。事实证明,所有合成的化合物在链转移步骤(ST)的纳摩尔范围(6-35 nM)中均具有活性。尤其是衍生物4- [1-(4-氟苄基)-5,7-二甲氧基-1H-吲哚-3-基] -2-羟基-4-氧代丁-2-烯酸(8e)表现最好药效团模型的拟合值显示出与临床INSTIs GS 9137(1)和MK-0518(2)相当的效能。我们已经使用最近发表的原型泡沫病毒全长整合酶复合物的晶体结构及其同源DNA(PFV-IN / DNA)进行了研究,研究了我们分子的结合模式。结果强调了衍生物8e采取与MK-0518和GS 9137相同的结合模式的能力。

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