Catching a Moving Target: Comparative Modeling of Flaviviral NS2B-NS3 Reveals Small Molecule Zika Protease Inhibitors

被引:9
|
作者
Pach, Szymon [1 ]
Sarter, Tim M. [2 ]
Yousef, Rafe [1 ]
Schaller, David [1 ]
Bergemann, Silke [1 ]
Arkona, Christoph [1 ]
Rademann, Joerg [1 ]
Nitsche, Christoph [2 ]
Wolber, Gerhard [1 ]
机构
[1] Free Univ Berlin, Pharmaceut & Med Chem, Inst Pharm, D-14195 Berlin, Germany
[2] Australian Natl Univ, Res Sch Chem, Canberra, ACT 2601, Australia
来源
ACS MEDICINAL CHEMISTRY LETTERS | 2020年 / 11卷 / 04期
基金
澳大利亚研究理事会;
关键词
Flavivirus; protease; inhibitors; PyRod; 3D pharmacophores; Dynophores; VIRUS NS3 PROTEASE; SERINE-PROTEASE; IN-VITRO; DENGUE; IDENTIFICATION; VACCINE; MUTAGENESIS; DISCOVERY; PROGRESS; LIGANDS;
D O I
10.1021/acsmedchemlett.9b00629
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
The pivotal role of viral proteases in virus replication has already been successfully exploited in several antiviral drug design campaigns. However, no efficient antivirals are currently available against flaviviral infections. In this study, we present lead-like small molecule inhibitors of the Zika Virus (ZIKV) NS2B-NS3 protease. Since only few nonpeptide competitive ligands are known, we take advantage of the high structural similarity with the West Nile Virus (WNV) NS2B-NS3 protease. A comparative modeling approach involving our in-house software PyRod was employed to systematically analyze the binding sites and develop molecular dynamics-based 3D pharmacophores for virtual screening. The identified compounds were biochemically characterized revealing low micromolar affinity for both ZIKV and WNV proteases. Their lead-like properties together with rationalized binding modes represent valuable starting points for future lead optimization. Since the NS2B-NS3 protease is highly conserved among flaviviruses, these compounds may also drive the development of pan-flaviviral antiviral drugs.
引用
收藏
页码:514 / 520
页数:7
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