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Identification of halosalicylamide derivatives as a novel class of allosteric inhibitors of HCV NS5B polymerase.

机译:卤代水杨酰胺衍生物的鉴定是一类新的HCV NS5B聚合酶变构抑制剂。

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摘要

Halosalicylamide derivatives were identified from high-throughput screening as potent inhibitors of HCV NS5B polymerase. The subsequent structure and activity relationship revealed the absolute requirement of the salicylamide moiety for optimum activity. Methylation of either the hydroxyl group or the amide group of the salicylamide moiety abolished the activity while the substitutions on both phenyl rings are acceptable. The halosalicylamide derivatives were shown to be non-competitive with respect to elongation nucleotide and demonstrated broad genotype activity against genotype 1-3 HCV NS5B polymerases. Inhibitor competition studies indicated an additive binding mode to the initiation pocket that is occupied by the thiadiazine class of compounds and an additive binding mode to the elongation pocket that is occupied by diketoacids, but a mutually exclusive binding mode with respect to the allosteric thumb pocket that is occupied by the benzimidazole class of inhibitors. Therefore, halosalicylamides represent a novel class of allosteric inhibitors of HCV NS5B polymerase.
机译:从高通量筛选中鉴定出卤代水杨酰胺衍生物是HCV NS5B聚合酶的有效抑制剂。随后的结构和活性关系揭示了水杨酰胺部分对于最佳活性的绝对要求。水杨酰胺部分的羟基或酰胺基的甲基化消除了活性,而两个苯环上的取代都是可接受的。卤代水杨酰胺衍生物显示出对伸长核苷酸不具有竞争性,并显示出针对基因型1-3 HCV NS5B聚合酶的广泛基因型活性。抑制剂竞争研究表明,噻二嗪类化合物占据了与起始口袋的加成结合模式,二酮酸占据了延伸口袋的加成结合模式,但相对于变构拇指口袋而言,则存在互斥的结合模式。被苯并咪唑类抑制剂占据。因此,卤代水杨酰胺代表了一类新的HCV NS5B聚合酶变构抑制剂。

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