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Enhanced Antiviral T Cell Function in the Absence of B7-H1 Is Insufficient To Prevent Persistence but Exacerbates Axonal Bystander Damage during Viral Encephalomyelitis

Authors :
Roscoe Atkinson
Timothy W. Phares
David R. Hinton
Cornelia C. Bergmann
Stephen A. Stohlman
Source :
The Journal of Immunology
Publication Year :
2010
Publisher :
The American Association of Immunologists, 2010.

Abstract

The T cell inhibitory ligand B7-H1 hinders T cell-mediated virus control, but also ameliorates clinical disease during autoimmune and virus-induced CNS disease. In mice infected with gliatropic demyelinating coronavirus, B7-H1 expression on oligodendroglia delays virus control, but also dampens clinical disease. To define the mechanisms by which B7-H1 alters pathogenic outcome, virus-infected B7-H1–deficient (B7-H1−/−) mice were analyzed for altered peripheral and CNS immune responses. B7-H1 deficiency did not affect peripheral T or B cell activation or alter the magnitude or composition of CNS-infiltrating cells. However, higher levels of IFN-γ mRNA in CNS-infiltrating virus-specific CD8 T cells as well as CD4 T cells contributed to elevated IFN-γ protein in the B7-H1−/− CNS. Increased effector function at the single-cell level was also evident by elevated granzyme B expression specifically in virus-specific CNS CD8 T cells. Although enhanced T cell activity accelerated virus control, 50% of mice succumbed to infection. Despite enhanced clinical recovery, surviving B7-H1−/− mice still harbored persisting viral mRNA, albeit at reduced levels compared with wild-type mice. B7-H1−/− mice exhibited extensive loss of axonal integrity, although demyelination, a hallmark of virus-induced tissue damage, was not increased. The results suggest that B7-H1 hinders viral control in B7-H1 expressing glia cells, but does not mediate resistance to CD8 T cell-mediated cytolysis. These data are the first, to our knowledge, to demonstrate that B7-H1–mediated protection from viral-induced immune pathology associated with encephalomyelitis resides in limiting T cell-mediated axonal bystander damage rather than direct elimination of infected myelinating cells.

Details

ISSN :
15506606 and 00221767
Volume :
185
Database :
OpenAIRE
Journal :
The Journal of Immunology
Accession number :
edsair.doi.dedup.....50ec5ea251846959caa85d4a2baab2b8
Full Text :
https://doi.org/10.4049/jimmunol.1001984