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发现具有(3S,4aS,8aS)-2-(3-氨基-2-羟丙基)十氢异喹啉-3-甲酰胺骨架的有效埃博拉病毒进入抑制剂。

Discovery of potent ebola entry inhibitors with (3S,4aS,8aS)-2-(3-amino-2-hydroxypropyl) decahydroisoquinoline-3-carboxamide scaffold.

机构信息

State Key Laboratory of Drug Research, Department of Medicinal Chemistry, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 555 Zuchongzhi Road, Shanghai, 201203, China.

Immunological Disease Research Center, State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, 201203, China; University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Eur J Med Chem. 2022 Oct 5;240:114608. doi: 10.1016/j.ejmech.2022.114608. Epub 2022 Jul 14.

Abstract

Ebola virus (EBOV), one member of the family Filoviridae, can causes hemorrhagic fever and other severe diseases in humans with a high mortality rate (25-90%). Until recently, there were no approved drugs and very limited treatment method for Ebola virus disease. In this study, we discovered a series of potent Ebola entry inhibitors with the (3S,4aS,8aS)-2-(3-amino-2-hydroxypropyl)decahydroisoquinoline-3-carboxamide scaffold from high-throughput screening in reported pseudotyped virus system. Further optimization resulted a most potent compound 28 (IC= 0.05 μM, SI = 98), which displayed 3-fold potency compared to the known inhibitor Toremifene (IC= 0.17 μM, SI = 55). Moreover, compound 28 exhibited the remarkable selectivity between EBOV-GP and VSV-G (Spec. Index = 58), thus could exclude nonspecific effects. Structure-activity relationship and molecular docking analysis of the new chemical scaffold provided more information on the binding modes and the spare volume at the binding cavity, thus can guide the design of the further potent compounds.

摘要

埃博拉病毒(EBOV)是丝状病毒科的一员,可引起人类出血热和其他严重疾病,死亡率高(25-90%)。直到最近,还没有批准用于埃博拉病毒病的药物,治疗方法非常有限。在这项研究中,我们从已报道的假病毒系统中的高通量筛选中发现了一系列具有(3S,4aS,8aS)-2-(3-氨基-2-羟丙基)十氢异喹啉-3-甲酰胺骨架的有效的埃博拉进入抑制剂。进一步的优化得到了最有效的化合物 28(IC=0.05 μM,SI=98),与已知抑制剂托瑞米芬(IC=0.17 μM,SI=55)相比,其效力提高了 3 倍。此外,化合物 28 在 EBOV-GP 和 VSV-G 之间表现出显著的选择性(Spec. Index=58),因此可以排除非特异性作用。新化学骨架的构效关系和分子对接分析提供了更多关于结合模式和结合腔剩余体积的信息,从而可以指导进一步设计更有效的化合物。

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