Structure-based discovery of clinically approved drugs as Zika virus NS2B-NS3 protease inhibitors that potently inhibit Zika virus infection in vitro and in vivo

Shuofeng Yuan, Jasper Fuk Woo Chan, Helena den-Haan, Kenn Ka Heng Chik, Anna Jinxia Zhang, Chris Chung Sing Chan, Vincent Kwok Man Poon, Cyril Chik Yan Yip, Winger Wing Nga Mak, Zheng Zhu, Zijiao Zou, Kah Meng Tee, Jian Piao Cai, Kwok Hung Chan, Jorge de la Peña, Horacio Pérez-Sánchez, José Pedro Cerón-Carrasco, Kwok Yung Yuen

Research output: Contribution to journalArticlepeer-review

117 Citations (Scopus)

Abstract

Zika virus (ZIKV) infection may be associated with severe complications in fetuses and adults, but treatment options are limited. We performed an in silico structure-based screening of a large chemical library to identify potential ZIKV NS2B-NS3 protease inhibitors. Clinically approved drugs belonging to different drug classes were selected among the 100 primary hit compounds with the highest predicted binding affinities to ZIKV NS2B-NS3-protease for validation studies. ZIKV NS2B-NS3 protease inhibitory activity was validated in most of the selected drugs and in vitro anti-ZIKV activity was identified in two of them (novobiocin and lopinavir-ritonavir). Molecular docking and molecular dynamics simulations predicted that novobiocin bound to ZIKV NS2B-NS3-protease with high stability. Dexamethasone-immunosuppressed mice with disseminated ZIKV infection and novobiocin treatment had significantly (P < 0.05) higher survival rate (100% vs 0%), lower mean blood and tissue viral loads, and less severe histopathological changes than untreated controls. This structure-based drug discovery platform should facilitate the identification of additional enzyme inhibitors of ZIKV.

Original languageEnglish
Pages (from-to)33-43
Number of pages11
JournalAntiviral Research
Volume145
DOIs
Publication statusPublished - Sept 2017
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2017 Elsevier B.V.

ASJC Scopus Subject Areas

  • Pharmacology
  • Virology

Keywords

  • Flavivirus
  • Molecular modelling
  • Novobiocin
  • Protease
  • Treatment
  • Zika

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