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Broad-Spectrum Antivirals against 3C or 3C-Like Proteases of Picornaviruses Noroviruses and Coronaviruses

机译:针对小核糖核酸病毒诺如病毒和冠状病毒的3C或3C蛋白酶的广谱抗病毒药

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摘要

Phylogenetic analysis has demonstrated that some positive-sense RNA viruses can be classified into the picornavirus-like supercluster, which includes picornaviruses, caliciviruses, and coronaviruses. These viruses possess 3C or 3C-like proteases (3Cpro or 3CLpro, respectively), which contain a typical chymotrypsin-like fold and a catalytic triad (or dyad) with a Cys residue as a nucleophile. The conserved key sites of 3Cpro or 3CLpro may serve as attractive targets for the design of broad-spectrum antivirals for multiple viruses in the supercluster. We previously reported the structure-based design and synthesis of potent protease inhibitors of Norwalk virus (NV), a member of the Caliciviridae family. We report herein the broad-spectrum antiviral activities of three compounds possessing a common dipeptidyl residue with different warheads, i.e., an aldehyde (GC373), a bisulfite adduct (GC376), and an α-ketoamide (GC375), against viruses that belong to the supercluster. All compounds were highly effective against the majority of tested viruses, with half-maximal inhibitory concentrations in the high nanomolar or low micromolar range in enzyme- and/or cell-based assays and with high therapeutic indices. We also report the high-resolution X-ray cocrystal structures of NV 3CLpro-, poliovirus 3Cpro-, and transmissible gastroenteritis virus 3CLpro- GC376 inhibitor complexes, which show the compound covalently bound to a nucleophilic Cys residue in the catalytic site of the corresponding protease. We conclude that these compounds have the potential to be developed as antiviral therapeutics aimed at a single virus or multiple viruses in the picornavirus-like supercluster by targeting 3Cpro or 3CLpro.
机译:系统发育分析表明,某些正向RNA病毒可以归类为小核糖核酸病毒样的超簇,其中包括小核糖核酸病毒,杯状病毒和冠状病毒。这些病毒具有3C或3C样蛋白酶(分别为3Cpro或3CLpro),它们包含典型的胰凝乳蛋白酶样折叠和带有Cys残基的亲和力催化三联体(或dyad)。 3Cpro或3CLpro保守的关键位点可以作为针对超簇中多种病毒的广谱抗病毒药物设计的诱人靶标。我们以前曾报道过杯状杯病毒科成员诺沃克病毒(NV)的有效蛋白酶抑制剂的结构化设计和合成。我们在此报告了三种化合物的广谱抗病毒活性,这些化合物具有相同的二肽基残基,具有不同的战斗部,即醛(GC373),亚硫酸氢盐加合物(GC376)和α-酮酰胺(GC375)对属于超级集群。所有化合物对大多数受测病毒均具有很高的功效,在基于酶和/或细胞的测定中,其最大抑制浓度在高纳摩尔或低微摩尔范围内达到一半,并且具有较高的治疗指数。我们还报告了NV 3CLpro-,脊髓灰质炎病毒3Cpro-和可传播的肠胃炎病毒3CLpro-GC376抑制剂复合物的高分辨率X射线共晶体结构,这些复合物显示与相应蛋白酶催化位点中的亲核Cys残基共价结合的化合物。我们得出的结论是,这些化合物有可能通过靶向3Cpro或3CLpro而发展成为针对微小病毒样超簇中的单个病毒或多种病毒的抗病毒治疗剂。

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