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Publication : Resilience in Long-Term Viral Infection: Genetic Determinants and Interactions.

First Author  Brinkmeyer-Langford C Year  2021
Journal  Int J Mol Sci Volume  22
Issue  21 PubMed ID  34768809
Mgi Jnum  J:345415 Mgi Id  MGI:6826507
Doi  10.3390/ijms222111379 Citation  Brinkmeyer-Langford C, et al. (2021) Resilience in Long-Term Viral Infection: Genetic Determinants and Interactions. Int J Mol Sci 22(21)
abstractText  Virus-induced neurological sequelae resulting from infection by Theiler's murine encephalomyelitis virus (TMEV) are used for studying human conditions ranging from epileptic seizures to demyelinating disease. Mouse strains are typically considered susceptible or resistant to TMEV infection based on viral persistence and extreme phenotypes, such as demyelination. We have identified a broader spectrum of phenotypic outcomes by infecting strains of the genetically diverse Collaborative Cross (CC) mouse resource. We evaluated the chronic-infection gene expression profiles of hippocampi and thoracic spinal cords for 19 CC strains in relation to phenotypic severity and TMEV persistence. Strains were clustered based on similar phenotypic profiles and TMEV levels at 90 days post-infection, and we categorized distinct TMEV response profiles. The three most common profiles included "resistant" and "susceptible," as before, as well as a "resilient" TMEV response group which experienced both TMEV persistence and mild neurological phenotypes even at 90 days post-infection. Each profile had a distinct gene expression signature, allowing the identification of pathways and networks specific to each TMEV response group. CC founder haplotypes for genes involved in these pathways/networks revealed candidate response-specific alleles. These alleles demonstrated pleiotropy and epigenetic (miRNA) regulation in long-term TMEV infection, with particular relevance for resilient mouse strains.
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