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Published on: July 18, 2019
Comparative Analysis of Genetic Risk for Viral-Induced Axonal Loss in Genetically Diverse Mice
Tae Wook Kang1, Aracely Perez-Gomez2, Koedi Lawley3
1Department of Veterinary Integrative Biosciences, College of Veterinary Medicine & Biomedical Sciences, Texas A&M University, College Station, TX 77843, USA.
Abstract:
Among mouse models of neurological disease, Theiler's murine encephalomyelitis virus (TMEV) provides a unique platform by using a naturally occurring viral trigger, paralleling the role of infections like Epstein-Barr virus in multiple sclerosis (MS). Just as not all individuals with predisposing viral infections develop the same neurological disease, not all mouse strains develop the same diseases following TMEV infection, so susceptibility is dictated by genetic background. For example, certain sets of alleles, called haplotypes, of the major histocompatibility complex (MHC) region have been associated with susceptibility to TMEV-induced demyelination (TVID) and MS. However, our previous work revealed that these MHC susceptibility haplotypes are not the sole contributors to TMEV-induced diseases in all mice. We infected mice from the genetically diverse Collaborative Cross (CC), a resource designed to reflect human population-level genetic variation. All 15 CC strains tested exhibited some form of neurological phenotype or CNS lesion following TMEV infection. However, chronic radiculoneuropathy characterized by axonal degeneration with myelin loss was observed in the CNS of only two strains, CC002 and CC023, which had markedly different immune responses and clinical profiles throughout the course of infection. Moreover, the pathology seen in CC002 and CC023 was not the same as what is typically seen in TVID. We used previous results from RNA sequencing of the hippocampus and spinal cord to test our hypothesis that myelin loss in these strains resulted from the convergent biological effects of multiple genetic risk variants, many previously unassociated with TMEV-induced diseases. These findings identify novel genetic targets and demonstrate the utility of genetically diverse models for uncovering complex neuroimmune interactions.
Insights
Theiler
Area of Science:
- Neuroimmunology
- Virology
- Genetics
Background:
- Theiler's murine encephalomyelitis virus (TMEV) infection in mice serves as a model for viral-triggered neurological diseases like multiple sclerosis (MS).
- Genetic background, particularly major histocompatibility complex (MHC) haplotypes, influences susceptibility to TMEV-induced demyelination (TVID).
- Previous research indicated that MHC regions alone do not fully explain disease susceptibility in all mouse models.
Purpose of the Study:
- To investigate the genetic basis of TMEV-induced neurological diseases in genetically diverse mouse models.
- To identify novel genetic risk variants contributing to TMEV-induced pathology beyond MHC associations.
- To explore the utility of genetically diverse models in understanding complex neuroimmune interactions.
Main Methods:
- Infection of 15 genetically diverse Collaborative Cross (CC) mouse strains with TMEV.
- Assessment of neurological phenotypes and central nervous system (CNS) lesions.
- Analysis of RNA sequencing data from hippocampus and spinal cord tissues.
Main Results:
- All tested CC strains developed neurological phenotypes or CNS lesions after TMEV infection.
- Chronic radiculoneuropathy with axonal degeneration and myelin loss was observed in two specific strains (CC002 and CC023).
- The pathology in CC002 and CC023 differed from typical TVID and was hypothesized to result from convergent effects of multiple genetic risk variants.
Conclusions:
- Genetically diverse mouse models, like the Collaborative Cross, are crucial for uncovering complex neuroimmune interactions.
- Novel genetic targets associated with TMEV-induced neurodegeneration were identified.
- Susceptibility to TMEV-induced diseases is influenced by a complex interplay of multiple genetic factors beyond MHC.
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