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Chelation motifs affecting metal-dependent viral enzymes: N'-acylhydrazone ligands as dual target inhibitors of HIV-1 integrase and reverse transcriptase ribonuclease H domain

机译:螯合基序影响金属依赖性病毒酶:N'-酰基hydr配体作为HIV-1整合酶和逆转录酶核糖核酸酶H结构域的双重靶标抑制剂

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摘要

Human immunodeficiency virus type 1 (HIV-1) infection, still represent a serious global health emergency. The chronic toxicity derived from the current anti-retroviral therapy limits the prolonged use of several antiretroviral agents, continuously requiring the discovery of new antiviral agents with innovative strategies of action. In particular, the development of single molecules targeting two proteins (dual inhibitors) is one of the current main goals in drug discovery. In this contest, metal-chelating molecules have been extensively explored as potential inhibitors of viral metal-dependent enzymes, resulting in some important classes of antiviral agents. Inhibition of HIV Integrase (IN) is, in this sense, paradigmatic. HIV-1 IN and Reverse Transcriptase-associated Ribonuclease H (RNase H) active sites show structural homologies, with the presence of two Mg(II) cofactors, hence it seems possible to inhibit both enzymes by means of chelating ligands with analogous structural features. Here we present a series of N'-acylhydrazone ligands with groups able to chelate the Mg(II) hard Lewis acid ions in the active sites of both the enzymes, resulting in dual inhibitors with micromolar and even nanomolar activities. The most interesting identified N'-acylhydrazone analog, compound 18, shows dual RNase H-IN inhibition and it is also able to inhibit viral replication in cell-based antiviral assays in the low micromolar range. Computational modeling studies were also conducted to explore the binding attitudes of some model ligands within the active site of both the enzymes.
机译:人类1型免疫缺陷病毒(HIV-1)感染仍然代表着严重的全球卫生紧急情况。由当前抗逆转录病毒疗法引起的慢性毒性限制了几种抗逆转录病毒剂的长期使用,从而不断要求发现具有创新作用策略的新型抗病毒剂。特别地,靶向两种蛋白质(双重抑制剂)的单分子的开发是药物发现中当前的主要目标之一。在这场竞赛中,金属螯合分子已被广泛研究为病毒金属依赖性酶的潜在抑制剂,从而产生了一些重要的抗病毒剂。从这个意义上说,抑制艾滋病毒整合酶(IN)是典型的。 HIV-1 IN和逆转录酶相关的核糖核酸酶H(RNase H)活性位点显示结构同源性,存在两个Mg(II)辅助因子,因此似乎可以通过螯合具有类似结构特征的配体来抑制这两种酶。在这里,我们介绍了一系列N'-酰基hydr配体,它们的基团能够在两种酶的活性位点螯合Mg(II)硬路易斯酸离子,从而产生具有微摩尔甚至纳摩尔活性的双重抑制剂。鉴定出的最有趣的N'-酰基hydr类似物化合物18具有双重RNase H-IN抑制作用,并且还能够在低微摩尔范围内的基于细胞的抗病毒测定中抑制病毒复制。还进行了计算建模研究,以探索两种酶的活性位点内某些模型配体的结合态。

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