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Novel Bifunctional Quinolonyl Diketo Acid Derivatives as HIV-1 Integrase Inhibitors: Design Synthesis Biological Activities and Mechanism of Action

机译:新型双功能喹诺酮基二酮酸衍生物作为HIV-1整合酶抑制剂:设计合成生物活性和作用机理。

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摘要

The virally encoded integrase protein is an essential enzyme in the life cycle of the HIV-1 virus and represents an attractive and validated target in the development of therapeutics against HIV infection. Drugs that selectively inhibit this enzyme, when used in combination with inhibitors of reverse transcriptase and protease, are believed to be highly effective in suppressing the viral replication. Among the HIV-1 integrase inhibitors, the β-diketo acids (DKAs) represent a major lead for anti-HIV-1drug development. In this study, novel bifunctional quinolonyl diketo acid derivatives were designed, synthesized and tested for their inhibitory ability against HIV-1 integrase. The compounds are potent inhibitors of integrase activity. Particularly, derivative >8 is a potent IN inhibitor for both steps of the reaction (3′-processing and strand transfer) and exhibits both high antiviral activity against HIV-1 infected cells and low cytotoxicity. Molecular modeling studies provide a plausible mechanism of action, which is consistent with ligand SARs and enzyme photo-crosslinking experiments.
机译:病毒编码的整合酶蛋白是HIV-1病毒生命周期中必不可少的酶,在抗HIV感染的治疗方法开发中代表着有吸引力且经过验证的目标。当与逆转录酶和蛋白酶的抑制剂组合使用时,选择性抑制该酶的药物被认为在抑制病毒复制方面非常有效。在HIV-1整合酶抑制剂中,β-二酮酸(DKA)代表了抗HIV-1药物开发的主要线索。在这项研究中,新型双功能喹啉基二酮酸衍生物被设计,合成和测试其对HIV-1整合酶的抑制能力。该化合物是整合酶活性的有效抑制剂。特别地,衍生物> 8 是反应的两个步骤(3'-加工和链转移)的有效IN抑制剂,并且对HIV-1感染的细胞显示出高抗病毒活性,并且细胞毒性低。分子建模研究提供了一种可能的作用机理,这与配体SAR和酶光交联实验相符。

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