Related Experiment Video
Updated: Jan 28, 2026

In Silico Identification and Characterization of circRNAs During Host-Pathogen Interactions
Published on: October 21, 2022
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.
Background:
Zika virus is the family member of flavivirus with no reported clinically approved drugs or vaccines in the market till date. This virus is spread by Aedes mosquitoes, and can also be transmitted through sexual contact or blood transfusions. There are reported medical conditions like microcephaly among new-borns delivered by infected pregnant women. The envelope protein of Zika virus is associated with virulence, tropism, mediation of receptor binding and membrane fusion. ED1-EDII domain (K1 loop pocket) is an integral part of the envelope protein and a potential drug target. In the present study, the purpose was to identify the potential lead molecules to dock against K1 loop which could be later considered as flavivirus entry inhibitors.
Methods:
Multiple sequence alignment method was considered for the analysis of indels in envelope protein. Phylogenetic tree was constructed based on the alignment. Aliphatic index, GRAVY scores and hydropathy plot of the envelope proteins were calculated for the flavivirus family members. Zika envelope protein was homology modeled and considered for protein-ligand docking analysis with chemical compounds of known functions.
Results:
As per in silico based analysis, the envelope protein of Zika virus is highly hydrophilic with the least number of amino acid deletions compared to rest of the family members. During docking studies, it was observed that compounds like NITD, compound 6, P02, Doxytetracycline and Rolitetracycline show better binding affinity with Zika envelope protein compared to dengue virus.
Conclusion:
These better binding compounds could be the promising lead molecules for Zika envelope protein which could better block the viral entry.
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.
Related Concept Videos
Outer Layers of the Cell Envelope
Psychodynamic Perspectives on Personality
Psychodynamic theorists argue that unconscious...
The Resting Membrane Potential
Molecules and Compounds
Social Cognitive Perspective on Personality
Criticisms of the Evolutionary Perspective
Evolutionary psychology provides one explanation for these findings, suggesting...

