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Updated: Aug 6, 2025

Zika Virus Specific Diagnostic Epitope Discovery
Published on: December 12, 2017
Unravelling the epidemiological diversity of Zika virus by analyzing key protein variations
Santiago Leiva1, Marina Bugnon Valdano2, Daniela Gardiol3
1Facultad de Ciencias Bioquímicas y Farmacéuticas, Instituto de Biología Molecular y Celular de Rosario-CONICET, Universidad Nacional de Rosario, Suipacha 531, 2000, Rosario, Argentina.
Abstract:
The consequences of Zika virus (ZIKV) infections were limited to sporadic mild diseases until almost a decade ago, when epidemic outbreaks took place, with quick spread into the Americas. Simultaneously, novel severe neurological manifestations of ZIKV infections were identified, including congenital microcephaly. However, why the epidemic strains behave differently is not yet completely understood, and many questions remain about the actual significance of genetic variations in the epidemiology and biology of ZIKV. In this study, we analysed a large number of viral sequences to identify genes with different levels of variability and patterns of genomic variations that could be associated with ZIKV diversity. We compared numerous epidemic strains with pre-epidemic strains, using the BWA-mem algorithm, and we also examined specific variations among the epidemic ZIKV strains derived from microcephaly cases. We identified several viral genes with dissimilar mutation rates among the ZIKV strain groups and novel protein variation profiles that might be associated with epidemiological particularities. Finally, we assessed the impact of the detected changes on the structure and stability of the NS1, NS5, and E proteins using the I-TASSER, trRosetta, and RaptorX modelling algorithms, and we found some interesting variations that might help to explain the heterogeneous features of the diverse ZIKA strains. This work contributes to the identification of genetic differences in the ZIKV genome that might have a phenotypic impact, providing a basis for future experimental analysis to elucidate the genetic causes of the recent ZIKV emergency.
Insights
Genetic variations in Zika virus (ZIKV) strains explain differences in disease severity, including congenital microcephaly. This study identifies key viral genes and protein changes linked to ZIKV
Area of Science:
- Virology
- Genetics
- Epidemiology
Background:
- Zika virus (ZIKV) evolved from causing mild disease to epidemic outbreaks with severe neurological manifestations like congenital microcephaly.
- The genetic basis for ZIKV's altered behavior and increased pathogenicity remains unclear.
Purpose of the Study:
- To identify genetic variations and mutation rates in ZIKV strains associated with epidemic spread and severe disease.
- To investigate the impact of these genetic changes on viral protein structure and function.
Main Methods:
- Comparative genomic analysis of pre-epidemic and epidemic ZIKV strains using BWA-mem.
- Identification of variable genes and protein variation profiles.
- Structural and stability analysis of key viral proteins (NS1, NS5, E) using I-TASSER, trRosetta, and RaptorX.
Main Results:
- Identified distinct mutation rates across different ZIKV strain groups.
- Discovered novel protein variation profiles potentially linked to epidemiological shifts.
- Found significant variations in the structure and stability of NS1, NS5, and E proteins, possibly explaining ZIKV's heterogeneous clinical presentations.
Conclusions:
- Specific genetic differences in the ZIKV genome correlate with phenotypic changes and disease severity.
- These findings provide a foundation for further research into the genetic determinants of ZIKV outbreaks and associated neurological disorders.
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