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HIV-1 Integrase Strand Transfer Inhibitors with Reduced Susceptibility to Drug Resistant Mutant Integrases

机译:HIV-1整合酶链转移抑制剂对药物抗性突变整合酶的敏感性降低

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摘要

HIV integrase (IN) strand transfer inhibitors (INSTIs) are among the newest anti-AIDS drugs; however, mutant forms of IN can confer resistance. We developed noncytotoxic naphthyridine-containing INSTIs that retain low nanomolar IC50 values against HIV-1 variants harboring all of the major INSTI-resistant mutations. We found by analyzing crystal structures of inhibitors bound to the IN from the prototype foamy virus (PFV) that the most successful inhibitors show striking mimicry of the bound viral DNA prior to 3′-processing and the bound host DNA prior to strand transfer. Using this concept of “bi-substrate mimicry,” we developed a new broadly effective inhibitor that not only mimics aspects of both the bound target and viral DNA but also more completely fills the space they would normally occupy. Maximizing shape complementarity and recapitulating structural components encompassing both of the IN DNA substrates could serve as a guiding principle for the development of new INSTIs.
机译:HIV整合酶(IN)链转移抑制剂(INSTI)是最新的抗艾滋病药物。然而,IN的突变形式可以赋予抗性。我们开发了无细胞毒性的含萘啶的INSTI,可针对包含所有主要INSTI耐药突变的HIV-1变体保持低纳摩尔IC50值。通过分析与原型泡沫病毒(PFV)的IN结合的抑制剂的晶体结构,我们发现最成功的抑制剂在结合3'-加工之前表现出结合病毒DNA的惊人模仿,而在链转移之前表现出结合宿主DNA的惊人模仿。使用“双底物模拟”的概念,我们开发了一种新型的,广谱有效的抑制剂,该抑制剂不仅可以模拟结合的靶标和病毒DNA的各个方面,而且可以更完全地填充它们通常占据的空间。最大限度地增强形状互补性并概括包含两个IN DNA底物的结构成分,可以作为开发新INSTI的指导原则。

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