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Computational study of protein specificity: The molecular basis of HIV-1 protease drug resistance

机译:蛋白质特异性的计算研究:分子基础 HIV-1蛋白酶抗药性

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摘要

Drug resistance has sharply limited the effectiveness of HIV-1 protease inhibitors in AIDS therapy. It is critically important to understand the basis of this resistance for designing new drugs. We have evaluated the free energy contribution of each residue in the HIV protease in binding to one of its substrates and to the five FDA-approved protease drugs. Analysis of these free energy profiles and the variability at each sequence position suggests: (i) single drug resistance mutations are likely to occur at not well conserved residues if they interact more favorably with drugs than with the substrate; and (ii) resistance-evading drugs should have a free energy profile similar to the substrate and interact most favorably with well conserved residues. We also propose an empirical parameter, called the free energy/variability value, which combines free energy calculation and sequence analysis to suggest possible drug resistance mutations on the protease. The free energy/variability value is defined as the product of one residue's contribution to the binding free energy and the variability of that residue. This parameter can assist in designing resistance-evading drugs for any target.
机译:耐药性严重限制了HIV-1蛋白酶抑制剂在AIDS治疗中的有效性。了解设计新药的抗药性的基础至关重要。我们评估了HIV蛋白酶中每个残基与其底物之一和五种FDA批准的蛋白酶药物结合后的自由能贡献。对这些自由能图谱和每个序列位置的变异性的分析表明:(i)如果保守性较弱的残基与药物的相互作用比与底物的相互作用更佳,则可能会在非保守的残基上发生单一耐药性突变; (ii)逃避耐药性药物应具有与底物相似的自由能谱,并且与保存良好的残基最有利地相互作用。我们还提出了一个经验参数,称为自由能/变异性值,该参数结合了自由能计算和序列分析以建议蛋白酶上可能存在的耐药性突变。自由能/可变性值定义为一个残基对结合自由能的贡献与该残基的可变性的乘积。这个参数 可以协助设计针对任何目标的逃避药物。

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