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Characterization and myocarditic capabilities of coxsackievirus B3 variants in selected mouse strains
Abstract:
Two variants of coxsackievirus B3 (CVB3) were compared with the original myocarditic parent variant (CVB3m) for myocarditic properties in several strains of mice. The ts1R variant produced little to no myocarditis in any of the nine mouse strains examined. The ts10R variant and CVB3m could be differentiated on the basis of the extent of myocarditis induced in mice of selected H-2b and H-2k haplotypes and in the female versus the male responses of two other inbred strains. Virus quantities recovered from the hearts of myocarditic mice did not correlate with the extent of disease. The three variants could not be differentiated on the basis of: (i) rate and extent of adsorption to heart tissue homogenates, (ii) kinetic neutralization rates with antiserum directed against CVB3m, (iii) 125I labeling of surface regions of polypeptides on purified particles, or (iv) rates of heat inactivation of infectivity at 50 degrees C. These data suggest that differences in pathogenicity cannot be attributed to major alterations in capsid polypeptides. Oligonucleotide fingerprint maps of T1 RNase digests of the genomes of purified particles of the three CVB3 variants showed distinct differences. Thus, the extent of myocarditis induced by CVB3 variants in a mouse model is affected by some subtle expression of the genome, presumably not involving capsid polypeptides, as well as by the haplotype and sex of a given mouse host species.
Insights
Coxsackievirus B3 (CVB3) variants exhibit varying myocarditis potential in mice. Genomic differences, not capsid alterations, likely influence disease severity and host response.
Area of Science:
- Virology
- Immunology
- Genetics
Background:
- Coxsackievirus B3 (CVB3) is a known cause of viral myocarditis.
- Understanding the genetic basis of CVB3 pathogenicity is crucial for disease management.
Purpose of the Study:
- To compare the myocarditic properties of two CVB3 variants (ts1R, ts10R) against the parent strain (CVB3m).
- To investigate the correlation between viral genome, host factors, and myocarditis induction.
Main Methods:
- Myocarditis induction in nine mouse strains with different H-2 haplotypes and sexes.
- Quantification of virus in heart tissue.
- Analysis of viral adsorption, neutralization kinetics, surface protein labeling, and heat inactivation.
- Oligonucleotide fingerprinting of viral genomes.
Main Results:
- The ts1R variant showed minimal myocarditis, while ts10R and CVB3m induced varying degrees of myocarditis.
- Myocarditis severity differed based on mouse H-2 haplotype and sex.
- Virus quantity in hearts did not correlate with disease extent.
- No significant differences were found in adsorption, neutralization, surface proteins, or heat stability.
- Distinct genomic differences were identified via oligonucleotide fingerprinting.
Conclusions:
- Pathogenicity differences are not due to major capsid polypeptide alterations.
- Subtle genomic variations, alongside host haplotype and sex, influence CVB3-induced myocarditis in mice.