Abstract
A new approach to respiratory syncytial (RS) virus subgroup determination was developed by using a simple nucleic acid filter hybridization technique. By this method, virus-infected cells are bound and fixed in a single step, and the viral RNA in the fixed-cell preparation is characterized directly by its ability to hybridize to cDNA probes specific for either the A or B subgroups of RS virus. The subgroup-specific probes were constructed from cDNA clones that corresponded to a portion of the extracellular domain of the RS virus G protein of either a subgroup B RS virus (8/60) or a subgroup A RS virus (A2). The cDNA probes were labeled with 32P and used to analyze RS virus isolates collected over a period of three decades. Replicate templates of infected cell preparations were hybridized with either the subgroup A or B probe. The subgroup assignments of 40 viruses tested by nucleic acid hybridization were in agreement with the results of subgroup determinations based on their reactivities with monoclonal antibodies, which previously has been the only method available for determining the subgroup classification of RS virus isolates. The nucleic acid hybridization assay has the advantage of providing broad-based discrimination of the two subgroups on the basis of nucleic acid homology, irrespective of minor antigenic differences that are detected in assays in which monoclonal antibodies are used. The nucleic acid hybridization technique provides a reliable method for RS virus subgroup characterization.
MeSH Terms
Antibodies, Monoclonal/immunology
Cells, Cultured
DNA Probes
DNA, Viral/metabolism
GTP-Binding Proteins/genetics,immunology
Genetic Variation
Humans
Nucleic Acid Hybridization
RNA, Viral/metabolism
Respiratory Syncytial Viruses/classification,genetics
Respirovirus Infections/genetics,immunology
Chemicals
Antibodies, Monoclonal
DNA Probes
DNA, Viral
RNA, Viral
GTP-Binding Proteins
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Sullender W M
Department of Microbiology, University of Alabama School of Medicine, Birmingham 35294.
Anderson L J
Anderson K
Wertz G W
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