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设计、合成及咪唑和噁唑片段的生物评估作为 HIV-1 整合酶-LEDGF/p75 断裂剂和微生物病原体抑制剂。

Design, synthesis and biological evaluation of imidazole and oxazole fragments as HIV-1 integrase-LEDGF/p75 disruptors and inhibitors of microbial pathogens.

机构信息

Advanced Materials Division, Mintek, 200 Malibongwe Drive, Randburg 2125, South Africa; Molecular Sciences Institute, School of Chemistry, University of the Witwatersrand, Private Bag 3, PO WITS 2050, South Africa.

Advanced Materials Division, Mintek, 200 Malibongwe Drive, Randburg 2125, South Africa.

出版信息

Bioorg Med Chem. 2020 Jan 1;28(1):115210. doi: 10.1016/j.bmc.2019.115210. Epub 2019 Nov 9.

DOI:10.1016/j.bmc.2019.115210
PMID:31753802
Abstract

We describe here the synthesis of libraries of novel 1-subtituted-5-aryl-1H-imidazole, 5-aryl-4-tosyl-4,5-dihydro-1,3-oxazole and 5-aryl-1,3-oxazole fragments via microwave (MW)-assisted cycloaddition of para-toluenesulfonylmethyl isocyanide (TosMIC) to imines and aldehydes. The compounds obtained were biologically evaluated in an AlphaScreen HIV-1 IN-LEDGF/p75 inhibition assay with six imidazole-based compounds (16c, 16f, 17c, 17f, 20a and 20d) displaying more than 50% inhibition at 10 µM, with IC values ranging from 7.0 to 30.4 µM. Additionally the hypothesis model developed predicts all active scaffolds except 20d to occupy similar areas as the N-heterocyclic (A) moiety and two aromatic rings (B and C) of previously identified inhibitor 5. These results indicate that the identified compounds represent a viable starting point for their use as templates in the design of next generation inhibitors targeting the HIV-1 IN and LEDGF/p75 protein-protein interaction. In addition, the in vitro antimicrobial properties of these fragments were tested by minimum inhibitory concentration (MIC) assays showing that compound 16f exhibited a MIC value of 15.6 μg/ml against S. aureus, while 17f displayed a similar MIC value against B. cereus, suggesting that these compounds could be further developed to specifically target those microbial pathogens.

摘要

我们在这里描述了通过微波(MW)辅助的对甲苯磺酰甲基异氰酸酯(TosMIC)与亚胺和醛的环加成反应,合成新型 1-取代-5-芳基-1H-咪唑、5-芳基-4-对甲苯磺酰基-4,5-二氢-1,3-恶唑和 5-芳基-1,3-恶唑片段的文库。通过 AlphaScreen HIV-1 IN-LEDGF/p75 抑制测定法对获得的化合物进行了生物评估,其中 6 种咪唑类化合物(16c、16f、17c、17f、20a 和 20d)在 10 µM 时显示出超过 50%的抑制率,IC 值范围为 7.0 至 30.4 µM。此外,所开发的假说模型预测除 20d 外,所有活性骨架都将占据与先前鉴定的抑制剂 5 的 N-杂环(A)部分和两个芳环(B 和 C)相似的区域。这些结果表明,所鉴定的化合物代表了下一代针对 HIV-1 IN 和 LEDGF/p75 蛋白-蛋白相互作用的抑制剂设计中作为模板使用的可行起点。此外,通过最小抑菌浓度(MIC)测定法测试了这些片段的体外抗菌性质,结果表明化合物 16f 对金黄色葡萄球菌的 MIC 值为 15.6 μg/ml,而 17f 对蜡状芽孢杆菌的 MIC 值相似,表明这些化合物可以进一步开发,以专门针对那些微生物病原体。

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