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.

PubMed

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.