Rotavirus Genome Segment 7 (NSP3) Is a Determinant of Extraintestinal Spread in the Neonatal Mouse
Open Access
- 1 July 2002
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 76 (13) , 6502-6509
- https://doi.org/10.1128/jvi.76.13.6502-6509.2002
Abstract
We used the neonatal mouse model of rotavirus infection to study extraintestinal spread following oral inoculation. Five-day-old pups were inoculated with either SA11-Cl3, SA11-Cl4, SA11-4F, RRV, or B223. By using virus detection in the liver as a proxy determination for extraintestinal spread, rotavirus strains capable of extraintestinal spread at high frequency (rhesus rotavirus [RRV]) and very low frequency (SA11-Cl4) were identified. Both strains productively infected the gastrointestinal tract. Oral inoculation of mice with RRV/ SA11-Cl4 reassortants and determination of virus titers in the gut and liver revealed that the extraintestinal spread phenotype segregated with RRV genome segment 7 to a high level of significance ( P = 10 −3 ). RRV segment 7 also segregated with the growth of virus in the gut ( P = 10 −5 ). Although infection of the gut was clearly required for tropism to the liver, there was no correlation between virus titers in the gut and detection of virus in the liver. Five days after intraperitoneal administration to bypass the gut barrier to virus spread, RRV and SA11-Cl4 both were recovered in the liver. However, only RRV was found in the liver following subcutaneous inoculation, suggesting that this peripheral site presented a similar barrier to virus spread as the gut. Sequence analysis of segment 7 from parental RRV and SA11-Cl4 and selected reassortants showed that (i) amino acid differences were distributed throughout the coding sequences and not concentrated in any particular functional motif and (ii) parental sequence was preserved in reassortants. These data support the hypothesis that NSP3, coded for by genome segment 7, plays a significant role in viral growth in the gut and spread to peripheral sites. The mechanism of NSP3-mediated tropism is under investigation.Keywords
This publication has 23 references indexed in Scilit:
- Hypertrophy, Hyperplasia, and Infectious Virus in Gut‐Associated Lymphoid Tissue of Mice after Oral Inoculation with Simian‐Human or Bovine‐Human Reassortant RotavirusesThe Journal of Infectious Diseases, 2001
- Rotavirus-specific proteins are detected in murine macrophages in both intestinal and extraintestinal lymphoid tissuesMicrobial Pathogenesis, 1998
- GENETICS OF THE ROTAVIRUSESAnnual Review of Microbiology, 1997
- Detection of Group C Rotavirus in Infants with Extrahepatic Biliary AtresiaThe Journal of Infectious Diseases, 1996
- Age-Dependent Diarrhea Induced by a Rotaviral Nonstructural GlycoproteinScience, 1996
- Detection of rotavirus in cerebrospinal fluid and blood of patients with convulsions and gastroenteritis by means of the reverse transcription polymerase chain reactionBrain & Development, 1993
- Characterization of an oligomerization domain and RNA-binding properties on rotavirus nonstructural protein NS34Virology, 1992
- Extraintestinal rotavirus infections in children with immunodeficiencyThe Journal of Pediatrics, 1992
- The effects of host age, virus dose, and virus strain on heterologous rotavirus infection of suckling miceMicrobial Pathogenesis, 1988
- Genomic Heterogeneity of Simian Rotavirus SA11Journal of General Virology, 1984