首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >Quantitative structure-activity relationship study of 2-arylsulfonyl-6-substituted benzonitriles as non-nucleoside reverse transcriptase inhibitors of HIV-1.
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Quantitative structure-activity relationship study of 2-arylsulfonyl-6-substituted benzonitriles as non-nucleoside reverse transcriptase inhibitors of HIV-1.

机译:2-芳基磺酰基-6-取代的苄腈作为HIV-1的非核苷类逆转录酶抑制剂的定量构效关系研究。

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The reverse transcriptase inhibition of HIV-1, the most common form of HIV, by non-nucleoside 2-arylsulfonyl-6-substituted benzonitriles is analysed through Fujita-Ban and Hansch approaches. The analyses have helped to ascertain the role of different substituents in explaining the observed inhibitory actions of these compounds. From both approaches it appeared that SO2 instead of SO or S at X; and NH2 instead of F at Y (see Figure 1) are advantageous to improving the activity of a compound against HIV-1. This in turn leads to the suggestion that the 2-arylsulfonyl-6-aminobenzonitrile scaffold is the only appropriate structural entity that may further result into potential compounds. Further, the compounds having a OMe substituent at the orthoposition, the bulkier substituents at meta-positions and "no" substituent at para-position of 2-arylsulfonyl moiety are beneficial in raising the activity. The two quantitative structure-activity relationship (QSAR) analyses, differing in parametric approach, therefore, provided the grounds for rationalizing the substituent selection in designing more potent compounds of the series.
机译:通过Fujita-Ban和Hansch方法分析了非核苷2-芳基磺酰基-6-取代的苄腈对HIV-1(HIV的最常见形式)的逆转录酶抑制作用。这些分析有助于确定不同取代基在解释所观察到的这些化合物的抑制作用中的作用。从这两种方法来看,似乎X都是SO2而不是SO或S。 NH 2代替F处的F(见图1)有利于提高化合物抗HIV-1的活性。这反过来导致暗示2-芳基磺酰基-6-氨基苄腈支架是可能进一步导致潜在化合物的唯一合适的结构实体。此外,在2-芳基磺酰基部分的邻位具有OMe取代基,在间位具有更大的取代基和在对位具有“无”取代基的化合物有利于提高活性。因此,两种定量结构-活性关系(QSAR)分析在参数方法上有所不同,从而为设计更有效的系列化合物中的取代基选择合理化提供了依据。

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