Zika virus infection in Collaborative Cross mice
Mattocks, M. D.; Plante, K. S.; Fritch, E. J.; Baric, R. S.; Ferris, M. T.; Heise, M. T.; Lazear, H. M.
Show abstract
The 2015-2016 emergence of Zika virus (ZIKV) in the Americas, and recognition that ZIKV infection during pregnancy can result in birth defects, revealed a need for small animal models to study ZIKV pathogenic mechanisms and evaluate candidate vaccines and antivirals. Mice would be an attractive system for such studies, but ZIKV replicates poorly in laboratory mice because it fails to antagonize murine STAT2 and STING. To address this, most ZIKV pathogenesis studies have used mice with impaired interferon signaling (e.g. Ifnar1-/- or treatment with IFNAR1-blocking antibodies). However, using mice with severe defects in innate antiviral signaling confounds studies of viral pathogenic mechanisms. Collaborative Cross (CC) mice have proven to be a valuable system for developing new mouse pathogenesis models for viral infections that are not well modeled in conventional laboratory mouse lines. To test whether CC mice could provide an immune-competent model for ZIKV pathogenesis, we infected CC lines with ZIKV and assessed weight loss, viremia, and production of neutralizing antibodies. We tested 21 CC lines (CC001, CC002, CC003, CC004, CC005, CC006, CC011, CC012, CC013, CC019, CC024, CC028, CC040, CC041, CC042, CC046, CC051, CC059, CC061, CC068, and CC072, 13 of which have non-functional alleles of the flavivirus restriction factor Oas1b) and 3 ZIKV strains (MR766, H/PF/2013, and a mouse-adapted variant of Dakar 41525). ZIKV infection did not induce weight loss compared to mock-infected controls and accordingly only low levels of viral RNA were detected in serum. Only a subset of mice developed neutralizing antibodies to ZIKV, likely due to overall low levels of infection and viremia. Our results are consistent with other studies demonstrating poor ZIKV infection in interferon-intact mice and suggest that the tested CC lines do not include polymorphic host genes that greatly increase susceptibility to ZIKV infection.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A novel antigenic site spanning domains I and III of the Zika virus envelope glycoprotein is the target of strongly neutralizing human monoclonal antibodies 96%
- Zika virus infection of pregnant Ifnar1-/- mice triggers strain-specific differences in fetal outcomes 96%
- African-lineage Zika virus replication dynamics and maternal-fetal interface infection in pregnant rhesus macaques 95%
Similar papers in this journal
- Vesicular stomatitis virus chimeras expressing the Oropouche virus glycoproteins elicit protective immune responses in mice. 96%
- Zika virus dumbbell-1 structure is critical for sfRNA presence and cytopathic effect during infection 94%
- A Sensitive Yellow Fever Virus Entry Reporter Identifies Valosin-Containing Protein (VCP/p97) as an Essential Host Factor for Flavivirus Uncoating 94%
Similar papers in this journal
- Virological Characterization of a New Isolated Strain of Andes Virus Involved in the Recent Person-to-Person Transmission Outbreak Reported in Argentina 94%
- Defining levels of dengue virus serotype-specific neutralizing antibodies induced by a live attenuated tetravalent dengue vaccine (TAK-003) 94%
- Differential pathogenesis of Usutu virus isolates in mice 93%
Similar papers in this journal
- A pigtailed macaque model for Kyasanur Forest disease virus and Alkhurma hemorrhagic disease virus 96%
- Zika virus infects pericytes in the choroid plexus and enters the central nervous system through the blood-cerebrospinal fluid barrier. 95%
- Long-term persistence of viral RNA and inflammation in the CNS of macaques exposed to aerosolized Venezuelan equine encephalitis virus. 94%
Similar papers in this journal
- Single amino acid mutations effect Zika virus replication in vitro and virulence in vivo 98%
- Disruption of Zika virus xrRNA1-dependent sfRNA1 production results in tissue-specific attenuated viral replication 96%
- Influence of different glycoproteins and of the virion core on SERINC5 antiviral activity 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.