Development of NS2B-NS3 protease inhibitor that impairs Zika virus replication

Wen-Wei Lin1, Yi-Jung Huang2, Yen-Tseng Wang3

  • 1Department of Laboratory Medicine, School of Post Baccalaureate Medicine, College of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan; Graduate Institute of Medicine, College of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan; Drug Development and Value Creation Research Center, Kaohsiung Medical University, Kaohsiung, Taiwan; Department of Medical Research, Kaohsiung Medical University Hospital, Kaohsiung, Taiwan.

Virus Research
|March 25, 2023
PubMed

Insights

Researchers identified a novel small molecule inhibitor, compound 8, that effectively targets Zika virus (ZIKV) replication. This compound demonstrated significant therapeutic potential in animal models, offering a promising avenue for treating ZIKV infections.

Area of Science:

  • Virology
  • Drug Discovery
  • Molecular Biology

Background:

  • Zika virus (ZIKV) causes severe neurological disorders, including microcephaly.
  • The 2015 Brazil outbreak highlighted the urgent need for ZIKV therapeutics.
  • No approved clinical treatments currently exist for ZIKV infection.

Purpose of the Study:

  • To screen for small molecule inhibitors targeting the ZIKV NS2B-NS3 protease.
  • To identify compounds that interfere with ZIKV replication and spread.
  • To evaluate potential therapeutic candidates for ZIKV infection.

Main Methods:

  • Small molecule screening to identify ZIKV NS2B-NS3 protease inhibitors.
  • Determination of half maximal inhibitory concentration (IC50) and selectivity index (SI).
  • Blind molecular docking to simulate inhibitor-protease interactions.
  • In vitro cytotoxicity (CC50) and antiviral efficacy (EC50) assays.
  • In vivo efficacy testing in a ZIKV-infected suckling mouse model.

Main Results:

  • Compounds 3, 8, and 9 were identified as non-competitive inhibitors of ZIKV NS2B-NS3 protease.
  • Molecular docking revealed interactions between inhibitors and key protease residues (Gln139, Trp148, Leu150, Val220).
  • Compound 8 exhibited the highest selectivity index (384.61) and potent antiviral activity (EC50 = 0.52 μM).
  • In vivo studies showed compound 8 significantly delayed ZIKV-induced lethality and reduced weight loss in mice.

Conclusions:

  • Compound 8 effectively inhibits ZIKV replication through non-competitive protease inhibition.
  • Compound 8 demonstrates significant therapeutic potential in a ZIKV mouse model.
  • Compound 8 warrants further investigation as a potential anti-ZIKV therapeutic agent.

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