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首页> 外文期刊>Journal of Medicinal Chemistry >A Systematic Approach to the Optimization of Substrate-Based Inhibitors of the Hepatitis C Virus NS3 Protease:Discovery of Potent and Specific Tripeptide Inhibitors
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A Systematic Approach to the Optimization of Substrate-Based Inhibitors of the Hepatitis C Virus NS3 Protease:Discovery of Potent and Specific Tripeptide Inhibitors

机译:一种优化基于底物的丙型肝炎病毒NS3蛋白酶抑制剂的系统方法:有效和特异三肽抑制剂的发现

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The inadequate efficacy and tolerability of current therapies for the infectious liver disease caused by the hepatitis C virus have warranted significant efforts in the development of new therapeutics.We have previously reported competitive peptide inhibitors of the NS3 serine protease based on the N-terminal cleavage products of peptide substrates.A detailed study of the interactions of these substrate-based inhibitors with the different subsites of the serine protease active site led to the discovery of novel residues that increased the affinity of the inhibitors.In this paper,we report the combination of the best binding residues in a tetrapeptide series that resulted in extremely potent inhibitors that bind exquisitely well to this enzyme.A substantial increase in potency was obtained with the simultaneous introduction of a 7-methoxy-2-phenyl-4-quinolinoxy moiety at the gamma-position of the P2 proline and a tert-leucine as a P3 residue.The increase in potency allowed for the further truncation and led to the identification of tripeptide inhibitors.Structure activity relationship studies on this inhibitor series led to the identification of carbamate-containing tripeptides that are able to inhibit replication of subgenomic HCV RNA in cell culture with potencies below 1 muM..This inhibitor series has the potential of becoming antiviral agents for the treatment of HCV infections.
机译:当前治疗丙型肝炎病毒引起的传染性肝病的疗效和耐受性不足,需要在新疗法的开发中做出巨大的努力。我们以前已经报道了基于N末端裂解产物的NS3丝氨酸蛋白酶的竞争性肽抑制剂。对这些基于底物的抑制剂与丝氨酸蛋白酶活性位点的不同亚位点相互作用的详细研究导致发现了新的残基,这些残基增加了抑制剂的亲和力。在本文中,我们报道了四肽系列中最好的结合残基,导致极强的抑制剂与该酶很好地结合。在γ上同时引入7-甲氧基-2-苯基-4-喹啉氧基部分可显着提高效力。 P2脯氨酸和叔亮氨酸作为P3残基的位点。截短并鉴定出三肽抑制剂。对该抑制剂系列的结构活性关系研究导致鉴定出含氨基甲酸酯的三肽,该肽能抑制细胞培养物中亚基因组HCV RNA的复制,效力低于1μM。系列有潜力成为治疗HCV感染的抗病毒药物。

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