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Expression of matrix metalloproteinases and their tissue inhibitor during viral encephalitis
Jiehao Zhou1, Norman W Marten, Cornelia C Bergmann
1Department of Pathology, Keck School of Medicine, University of Southern California, Los Angeles, CA 90033, USA.
Abstract:
Matrix metalloproteinases (MMPs) participate in remodeling the extracellular matrix and facilitate entry of inflammatory cells into tissues. Infection of the murine central nervous system (CNS) with a neurotropic coronavirus induces encephalitis associated with increased levels of mRNA encoding MMP-3 and MMP-12. Whereas virus-induced MMP-3 expression was restricted to CNS resident astrocytes, MMP-12 mRNA was expressed by both inflammatory cells and CNS resident cells. Immunosuppression increased both MMP-3 and MMP-12 mRNA levels in CNS resident cells, suggesting that the presence of virus rather than inflammation induced protease up-regulation. MMP activity is partially regulated by a small family of genes encoding tissue inhibitors of matrix metalloproteinases (TIMPs); among the TIMPs, only TIMP-1 mRNA expression increased in the CNS following coronavirus infection. During inflammation TIMP-1 mRNA was most prominently expressed by infiltrating cells. By contrast, in the immunosuppressed host TIMP-1 mRNA was expressed by CNS resident cells. Analysis of cytokine and chemokine mRNA induction within the infected CNS of healthy and immunocompromised mice suggested a possible correlation between increased viral replication and increased levels of beta interferon, MMP-3, MMP-12, and TIMP-1 mRNA. CD4+ T cells which localize to the perivascular and subarachnoid spaces were identified as the primary source of TIMP-1 protein. By contrast, protein expression was undetectable in astrocytes or CD8+ T cells, the primary antiviral effectors that localize to the CNS parenchyma in response to infection. These data suggest that in contrast to the results seen with MMPs, inhibition of protease activity via TIMP-1 expression correlates with the differential tissue distribution of T-cell subsets during acute coronavirus-induced encephalitis.
Insights
Matrix metalloproteinases (MMPs) and tissue inhibitors of metalloproteinases (TIMPs) are key in coronavirus encephalitis. TIMP-1 expression by CD4+ T cells correlates with disease, unlike MMPs.
Area of Science:
- Neuroimmunology
- Virology
- Molecular Biology
Background:
- Matrix metalloproteinases (MMPs) remodel the extracellular matrix and aid inflammatory cell entry into tissues.
- Coronavirus infection of the CNS causes encephalitis, increasing MMP-3 and MMP-12 mRNA.
- MMP-3 expression is limited to astrocytes, while MMP-12 is found in inflammatory and resident cells.
Purpose of the Study:
- To investigate the roles of MMPs and their inhibitors (TIMPs) in coronavirus-induced encephalitis.
- To determine the cellular sources and regulation of MMP-3, MMP-12, and TIMP-1 during CNS infection.
- To explore correlations between viral replication, immune responses, and protease/inhibitor expression.
Main Methods:
- Analysis of mRNA expression (MMP-3, MMP-12, TIMP-1, cytokines, chemokines) in the infected murine CNS.
- Comparison of gene expression in healthy and immunosuppressed mice.
- Immunohistochemical analysis to identify protein expression and cellular localization of TIMP-1.
Main Results:
- Coronavirus infection increased MMP-3, MMP-12, and TIMP-1 mRNA in the CNS.
- Immunosuppression elevated MMP-3 and MMP-12 in resident cells, suggesting virus-induced upregulation.
- TIMP-1 mRNA was upregulated during inflammation by infiltrating cells and in immunosuppressed hosts by resident cells.
- Increased viral replication correlated with higher levels of beta interferon, MMP-3, MMP-12, and TIMP-1 mRNA.
- CD4+ T cells were the primary source of TIMP-1 protein, not astrocytes or CD8+ T cells.
Conclusions:
- TIMP-1 expression, primarily from CD4+ T cells, is linked to coronavirus encephalitis.
- TIMP-1's cellular distribution differs from MMPs and correlates with T-cell subset localization.
- These findings highlight the differential regulation of protease activity by TIMP-1 in acute viral encephalitis.
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