T cell-mediated restriction of intracerebral murine cytomegalovirus infection displays dependence upon perforin but not interferon-γ

被引:0
作者
Maxim C. -J. Cheeran
Genya Gekker
Shuxian Hu
Joseph M. Palmquist
James R. Lokensgard
机构
[1] Minneapolis Medical Research Foundation,Neuroimmunology Laboratory
[2] University of Minnesota Medical School,undefined
来源
Journal of NeuroVirology | 2005年 / 11卷
关键词
encephalitis; MCMV; perforin;
D O I
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学科分类号
摘要
The authors have previously reported that adoptive transfer of splenocytes suppresses murine cytomegalovirus (MCMV) brain infection following intracerebroventricular injection of immunodeficient mice and that depletion of Thy 1.2+ T lymphocytes abolishes this suppressive effect. Here the authors report that splenocytes depleted of CD4+ T lymphocytes prior to adoptive transfer retained their ability to control viral expression in the brain. In sharp contrast, depletion of the CD8+ T-cell population prior to transfer abolished the suppressive effect, with sixfold greater expression in the brain than when undepleted splenocytes were used. The authors went on to examine the contributions of cytokine- and perforin-mediated mechanisms in controlling MCMV brain infection using splenocytes from major histocompatibility (MHC)-matched IFN-γ-knockout (GKO), and perforin-knockout (PKO) mice. When used in adoptive transfer studies, splenocytes from GKO mice controlled viral expression; however, cells from PKO mice could not control reporter gene expression or viral DNA replication in brain tissues. The authors have previously reported that the levels of the T-cell chemoattractant CXCL10 are highly elevated in the brains of MCMV-infected mice. Here the authors found that the receptor for this ligand, CXCR3, was not essential in mediating the suppressive effects of adoptive transfer. These data indicate that peripheral CD8+ T cells control MCMV brain infection through a perforin-mediated mechanism and that neither IFN-γ nor CXCR3 play a critical role in this neuroprotective response.
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页码:274 / 280
页数:6
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[1]  
Balashov KE(1999)CCR5(+) and CXCR3(+) T cells are increased in multiple sclerosis and their ligands MIP-1alpha and IP-10 are expressed in demyelinating brain lesions Proc Natl Acad Sci U S A 96 6873-6878
[2]  
Rottman JB(2004)Perforin and gamma interferon-mediated control of coronavirus central nervous system infection by CD8 T cells in the absence of CD4 T cells J Virol 78 1739-1350
[3]  
Weiner HL(2001)Interferon-gamma-mediated site-specific clearance of alphavirus from CNS neurons Science 293 303-306
[4]  
Hancock WW(2004)Intracerebral infection with murine cytomegalovirus induces CXCL10 and is restricted by adoptive transfer of splenocytes J NeuroVirol 10 152-162
[5]  
Bergmann CC(2003)Loss of the perforin cytotoxic pathway predisposes mice to experimental cytomegalovirus retinitis J Virol 77 3402-3408
[6]  
Parra B(1995)Gamma interferon is a major mediator of antiviral defense in experimental measles virus-induced encephalitis J Virol 69 5469-5474
[7]  
Hinton DR(2000)Cytokine-mediated control of viral infections Virology 273 221-227
[8]  
Ramakrishna C(1989)Site-restricted persistent cytomegalovirus infection after selective long-term depletion of CD4+ T lymphocytes J Exp Med 169 1199-1212
[9]  
Dowdell KC(1990)Cellular and molecular basis of the protective immune response to cytomegalovirus infection Curr Top Microbiol Immunol 154 189-220
[10]  
Stohlman SA(1993)T cell-dependent IFN-gamma exerts an antiviral effect in the central nervous system but not in peripheral solid organs J Immunol 150 2316-2321