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Inhibitors of Dengue virus and West Nile virus proteases based on the aminobenzamide scaffold

机译:基于氨基苯甲酰胺支架的登革热病毒和西尼罗河病毒蛋白酶的抑制剂

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摘要

Dengue and West Nile viruses (WNV) are mosquito-borne members of flaviviruses that cause significant morbidity and mortality. There is no approved vaccine or antiviral drugs for human use to date. In this study, a series of functionalized meta and para aminobenzamide derivatives were synthesized and subsequently screened in vitro against Dengue virus and West Nile virus proteases. Four active compounds were identified which showed comparable activity toward the two proteases and shared in common a meta or para(phenoxy)phenyl group. The inhibition constants (K i) for the most potent compound 7n against Dengue and West Nile virus proteases were 8.77 and 5.55 μM, respectively. The kinetics data support a competitive mode of inhibition of both proteases by compound 7n. This conclusion is further supported by molecular modeling. This study reveals a new chemical scaffold which is amenable to further optimization to yield potent inhibitors of the viral proteases via the combined utilization of iterative medicinal chemistry/structure-activity relationship studies and in vitro screening.
机译:登革热和西尼罗河病毒(WNV)是黄病毒的蚊子传播成员,导致大量发病和死亡。迄今为止,尚无批准的人类使用疫苗或抗病毒药物。在这项研究中,合成了一系列功能化的间氨基和对氨基苯甲酰胺衍生物,随后在体外针对登革热病毒和西尼罗河病毒蛋白酶进行了筛选。鉴定出四种活性化合物,它们对两种蛋白酶显示出可比的活性,并且共有一个间位或对位(对苯氧基)苯基。最有效的化合物7n对登革热和西尼罗河病毒蛋白酶的抑制常数(K i)分别为8.77和5.55μM。动力学数据支持化合物7n抑制两种蛋白酶的竞争模式。分子建模进一步支持了这一结论。这项研究揭示了一种新的化学支架,该支架可通过迭代药物化学/结构-活性关系研究和体外筛选的组合利用,进一步优化以产生有效的病毒蛋白酶抑制剂。

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