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Diarylaniline Derivatives as a Distinct Class of HIV-1 Non-nucleoside Reverse Transcriptase Inhibitors

机译:二芳基苯胺衍生物作为HIV-1非核苷逆转录酶抑制剂的一类。

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By using structure-based drug design and isosteric replacement, diarylaniline and 1,5-diarylbenzene-1,2diamine derivatives were synthesized and evaluated against wild type HIV-1 and drug-resistant viral strains, resulting in the discovery of diarylaniline derivatives as a distinct class of next-generation HIV-1 non-nucleoside reverse transcriptase inhibitor (NNRTI) agents. The most promising compound 37 showed significant EC50 values of 0.003-0.032//M against HIV-1 wild-type strains and of 0.005-0.604 μM against several drug-resistant strains. Current results also revealed important structure-activity relationship (SAR) conclusions for diarylanilines and strongly support our hypothesis that an NH2 group on the central benzene ring ortho to the aniline moiety is crucial for interaction with K101 of the NNRTI binding site in HIV-1 RT, likely by forming H-bonds with K101. Furthermore, molecular modeling studies with molecular mechanism/general Born surface area (MM/GBSA) technology demonstrated the rationality of our hypothesis.
机译:通过使用基于结构的药物设计和等排代换,合成了二芳基苯胺和1,5-二芳基苯-1,2二胺衍生物,并针对野生型HIV-1和耐药病毒株进行了评估,从而发现了二芳基苯胺衍生物类下一代HIV-1非核苷逆转录酶抑制剂(NNRTI)药物。最有希望的化合物37对HIV-1野生型菌株表现出0.003-0.032 // M的显着EC50值,对几种耐药菌株则表现出0.005-0.604μM的EC50值。目前的结果还揭示了二芳基苯胺的重要构效关系(SAR)结论,并强烈支持我们的假设,即与苯胺部分邻邻的苯中心环上的NH2基团对于与HIV-1 RT中NNRTI结合位点的K101相互作用至关重要,可能与K101形成氢键。此外,利用分子机理/一般生化表面积(MM / GBSA)技术进行的分子建模研究证明了我们的假设的合理性。

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