Related Experiment Video
Updated: Aug 11, 2026

Measuring Progressive Neurological Disability in a Mouse Model of Multiple Sclerosis
Published on: November 14, 2016
Perforin-dependent neurologic injury in a viral model of multiple sclerosis
P D Murray1, D B McGavern, X Lin
1Department of Immunology, Mayo Clinic and Foundation, Rochester, Minnesota 55905, USA.
Abstract:
In this study we demonstrate perforin-mediated cytotoxic effector function is necessary for viral clearance and may directly contribute to the development of neurologic deficits after demyelination in the Theiler's murine encephalomyelitis virus (TMEV) model of multiple sclerosis. We previously demonstrated major histocompatability complex (MHC) class I-deficient (beta2m-deficient) mice with an otherwise resistant genotype develop severe demyelination with minimal neurologic disease when chronically infected with TMEV. These studies implicate CD8(+) T cells as the pathogenic cell in the induction of neurologic disease after demyelination. To determine which effector mechanisms of CD8(+) T cells, granule exocytosis or Fas ligand expression, play a role in the development of demyelination and clinical disease, we infected perforin-deficient, lpr (Fas mutation), and gld (Fas ligand mutation) mice with TMEV. Perforin-deficient mice showed viral persistence in the CNS, chronic brain pathology, and demyelination in the spinal cord white matter. Perforin-deficient mice demonstrated severely impaired MHC class I-restricted cytotoxicity against viral epitopes, but normal MHC class II-restricted delayed-type hypersensitivity responses to virus antigen. Despite demyelination, virus-infected perforin-deficient mice showed only minimal neurologic deficits as indicated by clinical disease score, activity monitoring, and footprint analysis. Perforin- and MHC class II-deficient mice (with functional CD8(+) T cells and perforin molecules and an H-2(b) haplotype) had comparable demyelination and genotype, however, only the latter showed severe clinical disease. Gld and lpr mice demonstrated normal TMEV-specific cytotoxicity and maintained resistance to TMEV-induced demyelinating disease. These studies implicate perforin release by CD8(+) T cells as a potential mechanism by which neurologic deficits are induced after demyelination.
Insights
Perforin-mediated cytotoxicity is crucial for clearing Theiler's murine encephalomyelitis virus (TMEV) infection. Impaired perforin function leads to demyelination but reduces neurologic deficits in this multiple sclerosis model.
Area of Science:
- Neuroimmunology
- Virology
- Immunology
Background:
- CD8(+) T cells are implicated in TMEV-induced demyelination and neurologic disease.
- The roles of perforin-mediated cytotoxicity and Fas ligand expression in CD8(+) T cell pathogenesis remain unclear.
Purpose of the Study:
- To investigate the specific roles of perforin and Fas ligand in CD8(+) T cell-mediated demyelination and neurologic disease in the TMEV model.
Main Methods:
- Infection of perforin-deficient, Fas-mutant (lpr), and Fas ligand-mutant (gld) mice with TMEV.
- Assessment of viral clearance, central nervous system (CNS) pathology, demyelination, and clinical neurologic deficits.
- Evaluation of MHC class I-restricted cytotoxicity and MHC class II-restricted delayed-type hypersensitivity responses.
Main Results:
- Perforin-deficient mice exhibited persistent TMEV infection, chronic brain pathology, and spinal cord demyelination.
- Impaired perforin function resulted in reduced MHC class I-restricted cytotoxicity but preserved MHC class II-restricted responses.
- Despite significant demyelination, perforin-deficient mice showed minimal neurologic deficits.
- Fas ligand-deficient (gld) and Fas-mutant (lpr) mice maintained resistance to TMEV-induced demyelinating disease and showed normal cytotoxicity.
Conclusions:
- Perforin-mediated cytotoxic effector function is essential for viral clearance.
- Perforin release by CD8(+) T cells is implicated as a key mechanism inducing neurologic deficits following demyelination in the TMEV model.
- Fas ligand-mediated cytotoxicity does not appear to play a significant role in TMEV-induced demyelinating disease.

