Key result
Neuroattenuation of the wild-type 88-1961 mumps virus strain significantly reduced hydrocephalus severity in rats from 12.2% to 4.38% and was associated with three specific amino acid changes.
Absolute Event Rate: 4.38% vs 12.2%
p-value: p=0.002
Specific amino acid changes in mumps virus proteins are associated with enhanced or reduced neurovirulence and neurotropism in a rat model.
Should not alter mumps vaccine practices; hypothesis-generating for amino acid determinants of neurovirulence.
Mumps virus is highly neurotropic and, prior to widespread vaccination programs, was the major cause of viral meningitis in the United States. Nonetheless, the genetic basis of mumps virus neurotropism and neurovirulence was until recently not understood, largely due to the lack of an animal model. Here, nonneurovirulent (Jeryl Lynn vaccine) and highly neurovirulent (88-1961 wild type) mumps virus strains were passaged in human neural cells or in chicken fibroblast cells with the goal of neuroadapting or neuroattenuating the viruses, respectively. When tested in our rat neurovirulence assay against the respective parental strains, a Jeryl Lynn virus variant with an enhanced propensity for replication (neurotropism) and damage (neurovirulence) in the brain and an 88-1961 wild-type virus variant with decreased neurotropic and neurovirulent properties were recovered. To determine the molecular basis for the observed differences in neurovirulence and neuroattenuation, the complete genomes of the parental strains and their variants were fully sequenced. A comparison at the nucleotide level associated three amino acid changes with enhanced neurovirulence of the neuroadapted vaccine strain: one each in the nucleoprotein, matrix protein, and polymerase and three amino acid changes with reduced neurovirulence of the neuroattenuated wild-type strain: one each in the fusion protein, hemagglutinin-neuraminidase protein, and polymerase. The potential role of these amino acid changes in neurotropism, neurovirulence, and neuroattenuation is discussed.
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Rubin et al. (2003) studied Mumps virus neurovirulence (n=230). 88-1961-CEF mumps virus strain vs. 88-1961 parental mumps virus strain was evaluated on Severity of hydrocephalus (% of brain cross-sectional area) (p=0.002). Neuroattenuation of the wild-type 88-1961 mumps virus strain significantly reduced hydrocephalus severity in rats from 12.2% to 4.38% and was associated with three specific amino acid changes.
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