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Resistance outside the substrate envelope: hepatitis C NS3/4A protease inhibitors

机译:衬底外壳外的电阻:丙型肝炎NS3 / 4A蛋白酶抑制剂

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摘要

Direct acting antivirals have dramatically increased the efficacy and tolerability of hepatitis C treatment, but drug resistance has emerged with some of these inhibitors, including nonstruc-tural protein 3/4 A protease inhibitors (Pis). Although many co-crystal structures of Pis with the NS3/4A protease have been reported, a systematic review of these crystal structures in the context of the rapidly emerging drug resistance especially for early Pis has not been performed. To provide a framework for designing better inhibitors with higher barriers to resistance, we performed a quantitative structural analysis using co-crystal structures and models of HCV NS3/4A protease in complex with natural substrates and inhibitors. By comparing substrate structural motifs and active site interactions with inhibitor recognition, we observed that the selection of drug resistance mutations correlates with how inhibitors deviate from viral substrates in molecular recognition. Based on this observation, we conclude that guiding the design process with native substrate recognition features is likely to lead to more robust small molecule inhibitors with decreased susceptibility to resistance.
机译:直接代理抗病毒大大提高了丙型肝炎治疗的功效和耐受性,但其中一些抑制剂出现了耐药性,包括非毒性蛋白3/4蛋白酶抑制剂(PIS)。尽管已经报道了具有NS3 / 4A蛋白酶的PIS的许多共晶结构,但尚未进行在迅速出现的耐药性抗性的背景下对这些晶体结构的系统审查尚未进行。为了提供用于设计具有更高障碍障碍的更好抑制剂的框架,我们使用与天然底物和抑制剂复合物中的HCV NS3 / 4A蛋白酶的共晶结构和模型进行定量结构分析。通过与抑制剂识别的底物结构基序和活性位点相互作用进行比较,观察到耐药性突变的选择与抑制剂如何偏离病毒基质的分子识别。基于该观察,我们得出结论,引导具有天然底物识别特征的设计过程可能导致更强大的小分子抑制剂,其抗性降低。

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