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Published on: December 29, 2015
Typing of human enteroviruses by partial sequencing of VP1
M S Oberste1, K Maher, D R Kilpatrick
1Respiratory and Enteric Viruses Branch, Division of Viral and Rickettsial Diseases, National Center for Infectious Diseases, Centers for Disease Control and Prevention, Atlanta, Georgia 30333, USA. mbo2@cdc.gov
Abstract:
Human enteroviruses (family Picornaviridae) are the major cause of aseptic meningitis and also cause a wide range of other acute illnesses, including neonatal sepsis-like disease, acute flaccid paralysis, and acute hemorrhagic conjunctivitis. The neutralization assay is usually used for enterovirus typing, but it is labor-intensive and time-consuming and standardized antisera are in limited supply. We have developed a molecular typing system based on reverse transcription-PCR and nucleotide sequencing of the 3' half of the genomic region encoding VP1. The standard PCR primers amplify approximately 450 bp of VP1 for most known human enterovirus serotypes. The serotype of an "unknown" may be inferred by comparison of the partial VP1 sequence to those in a database containing VP1 sequences for the prototype strains of all 66 human enterovirus serotypes. Fifty-one clinical isolates of known serotypes from the years 1991 to 1998 were amplified and sequenced, and the antigenic and molecular typing results agreed for all isolates. With one exception, the nucleotide sequences of homologous strains were at least 75% identical to one another (>88% amino acid identity). Strains with homologous serotypes were easily discriminated from those with heterologous serotypes by using these criteria for identification. This method can greatly reduce the time required to type an enterovirus isolate and can be used to type isolates that are difficult or impossible to type with standard immunological reagents. The technique may also be useful for the rapid determination of whether viruses isolated during an outbreak are epidemiologically related.
Insights
A new molecular typing system using VP1 gene sequencing offers a faster and more accurate method for identifying human enterovirus serotypes compared to traditional assays. This advance aids in diagnosing enterovirus infections and tracking outbreaks.
Area of Science:
- Virology
- Molecular Biology
- Infectious Diseases
Background:
- Human enteroviruses are significant pathogens causing aseptic meningitis, neonatal sepsis-like disease, acute flaccid paralysis, and acute hemorrhagic conjunctivitis.
- Traditional enterovirus typing relies on neutralization assays, which are labor-intensive, time-consuming, and limited by the availability of standardized antisera.
Purpose of the Study:
- To develop and validate a novel molecular typing system for human enteroviruses.
- To improve the speed and accuracy of enterovirus serotyping compared to existing immunological methods.
Main Methods:
- Development of a reverse transcription-polymerase chain reaction (RT-PCR) assay targeting the 3' half of the VP1 gene.
- Nucleotide sequencing of the amplified VP1 region (approximately 450 bp).
- Comparison of obtained sequences against a comprehensive database of 66 human enterovirus prototype strains.
Main Results:
- The molecular typing system accurately identified the serotypes of 51 clinical isolates, showing complete agreement with antigenic typing.
- Homologous enterovirus strains exhibited high nucleotide sequence identity (≥75%) and amino acid identity (≥88%).
- The method effectively discriminated between homologous and heterologous serotypes based on sequence identity criteria.
Conclusions:
- This molecular typing system significantly reduces the time required for enterovirus identification.
- It provides a valuable alternative for typing isolates that are challenging for standard immunological methods.
- The technique is potentially useful for rapid epidemiological surveillance during viral outbreaks.
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