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Constitutive expression of murine c-FLIPR causes autoimmunity in aged mice
F Ewald1, M Annemann1, M C Pils2
11] Institute of Molecular and Clinical Immunology, Otto-von-Guericke-University Magdeburg, Leipziger Str. 44, Magdeburg, Germany [2] Research Group of Systems-Oriented Immunology and Inflammation Research, Department of Immune Control, Helmholtz Centre for Infection Research, Inhoffenstr. 7, Braunschweig, Germany.
Abstract:
Death receptor-mediated apoptosis is a key mechanism for the control of immune responses and dysregulation of this pathway may lead to autoimmunity. Cellular FLICE-inhibitory proteins (c-FLIPs) are known as inhibitors of death receptor-mediated apoptosis. The only short murine c-FLIP splice variant is c-FLIPRaji (c-FLIPR). To investigate the functional role of c-FLIPR in the immune system, we used the vavFLIPR mouse model constitutively expressing murine c-FLIPR in all hematopoietic compartments. Lymphocytes from these mice are protected against CD95-mediated apoptosis and activation-induced cell death. Young vavFLIPR mice display normal lymphocyte compartments, but the lymphocyte populations alter with age. We identified reduced levels of T cells and slightly higher levels of B cells in 1-year-old vavFLIPR mice compared with wild-type (WT) littermates. Moreover, both B and T cells from aged vavFLIPR animals show activated phenotypes. Sera from 1-year-old WT and transgenic animals were analysed for anti-nuclear antibodies. Notably, elevated titres of these autoantibodies were detected in vavFLIPR sera. Furthermore, tissue damage in kidneys and lungs from aged vavFLIPR animals was observed, indicating that vavFLIPR mice develop a systemic lupus erythematosus-like phenotype with age. Taken together, these data suggest that c-FLIPR is an important modulator of apoptosis and enforced expression leads to autoimmunity.
Insights
Enforced expression of cellular FLICE-inhibitory proteins-related (c-FLIPR) in immune cells protects against apoptosis but leads to autoimmunity. Aged mice with this genetic modification developed a lupus-like disease, indicating c-FLIPR
Area of Science:
- Immunology
- Molecular Biology
- Autoimmunity
Background:
- Death receptor-mediated apoptosis controls immune responses; its dysregulation can cause autoimmunity.
- Cellular FLICE-inhibitory proteins (c-FLIPs) inhibit this apoptosis pathway.
- The short murine splice variant c-FLIPRaji (c-FLIPR) function in immunity is unknown.
Purpose of the Study:
- Investigate the role of c-FLIPR in the immune system.
- Determine if constitutive c-FLIPR expression impacts lymphocyte populations and autoimmunity.
Main Methods:
- Generated vavFLIPR mice with constitutive c-FLIPR expression in hematopoietic cells.
- Analyzed lymphocyte populations, apoptosis resistance, autoantibody levels, and tissue pathology in young and aged mice.
- Compared transgenic mice with wild-type (WT) littermates.
Main Results:
- VavFLIPR lymphocytes were protected against CD95-mediated apoptosis and activation-induced cell death.
- Aged vavFLIPR mice showed altered lymphocyte levels (reduced T cells, increased B cells) and activated phenotypes.
- Elevated anti-nuclear autoantibodies and tissue damage (kidneys, lungs) were observed in aged vavFLIPR mice, indicating a lupus-like phenotype.
Conclusions:
- c-FLIPR is a key modulator of apoptosis within the immune system.
- Constitutive expression of c-FLIPR leads to age-dependent autoimmunity, specifically a systemic lupus erythematosus-like phenotype.
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