Identification of Potential Lead Molecules for Zika Envelope Protein from In Silico Perspective

Selvaa Kumar Chellasamy1, Shine Devarajan1

  • 1Faculty of Biotechnology and Bioinformatics, D.Y. Patil Deemed to be University, CBD Belapur, Navi Mumbai, India.

Abstract

Insights

Researchers identified potential drug leads for Zika virus by analyzing its envelope protein. Compounds like Doxytetracycline showed strong binding, suggesting they could inhibit viral entry and combat Zika virus infections.

Area of Science:

  • Virology
  • Drug Discovery
  • Molecular Biology

Background:

  • Zika virus, a flavivirus, lacks approved drugs or vaccines.
  • Transmission occurs via mosquitoes, sexual contact, and blood transfusions.
  • Zika virus infection in pregnant women can cause microcephaly in newborns.

Purpose of the Study:

  • Identify potential lead molecules targeting the Zika virus envelope protein's K1 loop pocket.
  • Develop novel flavivirus entry inhibitors.

Main Methods:

  • Comparative analysis of envelope protein sequences using multiple sequence alignment.
  • Phylogenetic tree construction and calculation of physicochemical properties (aliphatic index, GRAVY scores, hydropathy).
  • Homology modeling of Zika envelope protein followed by in silico protein-ligand docking.

Main Results:

  • Zika virus envelope protein is highly hydrophilic with minimal amino acid deletions compared to other flaviviruses.
  • Docking studies revealed strong binding affinities for compounds NITD, compound 6, P02, Doxytetracycline, and Rolitetracycline against the Zika envelope protein.
  • These compounds demonstrated superior binding compared to dengue virus envelope protein.

Conclusions:

  • Identified compounds show promise as lead molecules for targeting the Zika envelope protein.
  • These molecules have the potential to inhibit Zika virus entry into host cells.
  • Further development could lead to new therapeutic strategies against Zika virus.

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