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Searching for novel scaffold of triazole non-nucleoside inhibitors of HIV-1 reverse transcriptase

机译:寻找新型支架的HIV-1逆转录酶三唑非核苷抑制剂

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Abstract Azoles are a promising class of the new generation of HIV-1 non-nucleoside reverse transcriptase inhibitors (NNRTIs). From thousands of reported compounds, many possess the same basic structure of an aryl substituted azole ring linked by a thioglycolamide chain with another aromatic ring. In order to find novel extensions for this basic scaffold, we explored the 5-position substitution pattern of triazole NNRTIs using molecular docking followed by the synthesis of selected compounds. We found that heterocyclic substituents in the 5-position of the triazole ring are detrimental to the inhibitory activity of compounds with four-membered thioglycolamide linker and this substitution seems to be viable only for compounds with shorter two-membered linker. Promising compound, N-(4-carboxy-2-chlorophenyl)-2-((4-benzyl-5-methyl-4H-1,2,4-triazol-3-yl)sulfanyl)acetamide, with potent inhibitory activity and acceptable aqueous solubility has been identified in this study that could serve as lead scaffold for the development of novel water-soluble salts of triazole NNRTIs.
机译:摘要唑是新一代HIV-1非核苷逆转录酶抑制剂(NNRTIs)的有前途的一类。在数千种已报道的化合物中,许多化合物具有相同的基本结构,这些结构是通过硫代乙醇酰胺链与另一个芳族环连接的芳基取代的唑环。为了找到这种基础支架的新扩展,我们探索了三唑NNRTIs的5位取代模式,方法是使用分子对接,然后合成所选化合物。我们发现三唑环的5-位上的杂环取代基对具有四元硫代糖酰胺酰胺连接基的化合物的抑制活性有害,并且该取代似乎仅对于具有较短的二元连接基的化合物是可行的。有潜力的抑制活性N-(4-羧基-2-氯苯基)-2-((4-苄基-5-甲基-4H-1,2,4-三唑-3-基)硫烷基)乙酰胺在这项研究中已经确定了可接受的水溶性,可以用作开发三唑NNRTIs新型水溶性盐的铅支架。

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