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Updated: Nov 12, 2025

Isolation of Fidelity Variants of RNA Viruses and Characterization of Virus Mutation Frequency
Published on: June 16, 2011
Viral determinants that drive Enterovirus-A71 fitness and virulence
Pei Yi Ang1,2, Connie Wan Hui Chong1,2, Sylvie Alonso1,2
1Infectious Diseases Translational Research Programme, Department of Microbiology&Immunology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore.
Abstract:
Hand, Foot and Mouth Disease (HFMD) is usually a self-limiting, mild childhood disease that is caused mainly by Coxsackie virus A16 (CVA16) and Enterovirus A71 (EV-A71), both members of the Picornaviridae family. However, recurring HFMD outbreaks and epidemics due to EV-A71 infection in the Western Pacific region, and the propensity of EV-A71 strains to cause severe neurological complications have made this neurotropic virus a serious public health concern in afflicted countries. High mutation rate leading to viral quasispecies combined with frequent intra- and inter-typic recombination events amongst co-circulating EV-A71 strains have contributed to the great diversity and fast evolution of EV-A71 genomes, making impossible any accurate prediction of the next epidemic strain. Comparative genome sequence analyses and mutagenesis approaches have led to the identification of a number of viral determinants involved in EV-A71 fitness and virulence. These viral determinants include amino acid residues located in the structural proteins of the virus, affecting attachment to the host cell surface, receptor binding, and uncoating events. Critical residues in non-structural proteins have also been identified, including 2C, 3A, 3C proteases and the RNA-dependent RNA polymerase. Finally, mutations altering key secondary structures in the 5' untranslated region were also found to influence EV-A71 fitness and virulence. While our current understanding of EV-A71 pathogenesis remains fragmented, these studies may help in the rational design of effective treatments and broadly protective vaccine candidates.
Insights
Enterovirus A71 (EV-A71) causes severe Hand, Foot and Mouth Disease (HFMD) with neurological complications. Viral evolution and genetic diversity hinder prediction, but key determinants of EV-A71 virulence are being identified for treatment and vaccine development.
Area of Science:
- Virology
- Molecular Biology
- Public Health
Background:
- Hand, Foot and Mouth Disease (HFMD) is typically mild but Enterovirus A71 (EV-A71) outbreaks cause severe neurological disease.
- EV-A71's high mutation rate and recombination lead to genetic diversity, complicating epidemic prediction and control.
- EV-A71 is a significant public health concern in the Western Pacific region.
Purpose of the Study:
- To identify viral determinants influencing EV-A71 fitness and virulence.
- To understand the genetic factors driving EV-A71 evolution and pathogenesis.
- To provide insights for developing effective treatments and vaccines against EV-A71.
Main Methods:
- Comparative genome sequence analysis of EV-A71 strains.
- Mutagenesis approaches to study viral protein functions.
- Identification of critical residues in structural and non-structural proteins.
Main Results:
- Key amino acid residues in structural proteins affect host cell attachment, binding, and uncoating.
- Critical residues in non-structural proteins (2C, 3A, 3C proteases, RNA-dependent RNA polymerase) identified.
- Mutations in the 5' untranslated region influence EV-A71 fitness and virulence.
Conclusions:
- Understanding EV-A71 genetic determinants is crucial for controlling outbreaks.
- Identified viral factors are potential targets for antiviral therapies.
- Research aids in the rational design of broadly protective EV-A71 vaccine candidates.
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