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Serologic Cross-reactivity of Murine Parvovirus Capsid Antigens
April M Wagner1, Melissa J Romero-Aleshire1, D Dean Billheimer2
1University Animal Care, University of Arizona, Tucson, Arizona.
Abstract:
Genomic sequence analysis of autonomous parvoviruses within the genus Protoparvovirus generates 2 groups that are principally of mouse origin: the minute virus of mice (MVM) strains (MVMp, MVMi, MVMc, MVMm) and the mouse parvovirus (MPV)-like strains (MPV-1, MPV-2, MPV-3, MPV-4, MPV-5, HaPV, LuIII). Baculovirus-expressed recombinant capsid protein (rVP2) from each of these 11 parvovirus strains were produced, purified, and demonstrated to form virus-like particles. Each rVP2 preparation was then used as antigen in a multiplex fluorescent immunoassay and to immunize 5 different strains of mice. Sera from immunized mice, mice experimentally monoinfected with various MVM or MPV isolates, and mice naturally infected with murine parvoviruses were evaluated with the multiplex fluorescent immunoassay rVP2 panel. Results for sera from immunized mice indicate that homologous antigen-antisera interactions produced the strongest seroreactivity. All MVM antigens were highly cross-reactive with heterologous MVM antisera, while more variability was observed in heterologous antigen-antisera reactions among the MPV-like strains. MPV-1, MPV-3, HaPV, and LuIII were highly cross-reactive with each other, MPV-2 and MPV-5 were highly cross-reactive with each other, and MPV-4 displayed modest cross-reactivity with certain MPV-like strains. Serologic cross-reactivity patterns similar to those in immunized mice were observed in mice experimentally infected with MVMp, MVMm, MPV-1, MPV-5, or HaPV, and in sera from mice naturally infected with MVM and MPV. Serologic cross-reactivity spectrums suggest a small panel of rVP2 antigens (MVM, MPV-1, MPV-2, MPV-4) combined with the generic murine parvovirus recombinant nonstructural protein 1 (rNS1) antigen are sufficient for qualitative detection of currently known MVM and MPV-like strains.
Insights
This study developed a diagnostic tool for mouse parvoviruses. A small panel of recombinant capsid proteins can detect minute virus of mice (MVM) and mouse parvovirus (MPV)-like strains, aiding in murine parvovirus diagnostics.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Autonomous parvoviruses of the genus Protoparvovirus primarily originate from mice, forming two main groups: minute virus of mice (MVM) and mouse parvovirus (MPV)-like strains.
- Accurate detection and differentiation of these murine parvoviruses are crucial for research and diagnostics.
Purpose of the Study:
- To develop a serological assay for the detection and differentiation of MVM and MPV-like strains.
- To evaluate the cross-reactivity patterns of recombinant capsid proteins (rVP2) from various parvovirus strains.
Main Methods:
- Genomic sequence analysis of 11 autonomous parvovirus strains.
- Production and purification of baculovirus-expressed recombinant capsid protein (rVP2) from each strain.
- Development of a multiplex fluorescent immunoassay using rVP2 antigens.
- Evaluation of sera from immunized, experimentally infected, and naturally infected mice.
Main Results:
- Homologous antigen-antisera interactions showed the strongest seroreactivity.
- MVM strains exhibited high cross-reactivity among themselves.
- MPV-like strains displayed varied cross-reactivity patterns, with distinct clusters identified (e.g., MPV-1, MPV-3, HaPV, LuIII; MPV-2, MPV-5).
- Serological patterns in experimentally and naturally infected mice mirrored those in immunized mice.
Conclusions:
- A limited panel of rVP2 antigens (MVM, MPV-1, MPV-2, MPV-4) is sufficient for detecting known MVM and MPV-like strains.
- Combining these rVP2 antigens with a generic recombinant nonstructural protein 1 (rNS1) antigen can provide comprehensive qualitative detection.
- This approach offers a valuable tool for diagnosing infections caused by diverse murine parvoviruses.
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