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CD4+ T cell-associated pathophysiology critically depends on CD18 gene dose effects in a murine model of psoriasis
Daniel Kess1, Thorsten Peters, Jan Zamek
1Department of Dermatology, University of Cologne, Cologne, Germany.
Abstract:
In a CD18 hypomorphic polygenic PL/J mouse model, the severe reduction of CD18 (beta(2) integrin) to 2-16% of wild-type levels leads to the development of a psoriasiform skin disease. In this study, we analyzed the influence of reduced CD18 gene expression on T cell function, and its contribution to the pathogenesis of this disease. Both CD4(+) and CD8(+) T cells were significantly increased in the skin of affected CD18 hypomorphic mice. But only depletion of CD4(+) T cells, and not the removal of CD8(+) T cells, resulted in a complete clearance of the psoriasiform dermatitis. This indicates a central role of CD4(+) T cells in the pathogenesis of this disorder, further supported by the detection of several Th1-like cytokines released predominantly by CD4(+) T cells. In contrast to the CD18 hypomorphic mice, CD18 null mutants of the same strain did not develop the psoriasiform dermatitis. This is in part due to a lack of T cell emigration from dermal blood vessels, as experimental allergic contact dermatitis could be induced in CD18 hypomorphic and wild-type mice, but not in CD18 null mutants. Hence, 2-16% of CD18 gene expression is obviously sufficient for T cell emigration driving the inflammatory phenotype in CD18 hypomorphic mice. Our data suggest that the pathogenic involvement of CD4(+) T cells depends on a gene dose effect with a reduced expression of the CD18 protein in PL/J mice. This murine inflammatory skin model may also have relevance for human polygenic inflammatory diseases.
Insights
Reduced CD18 integrin expression causes psoriasiform skin disease in mice, driven by CD4+ T cells. This mouse model offers insights into human polygenic inflammatory skin conditions.
Area of Science:
- Immunology
- Dermatology
- Genetics
Background:
- CD18 (beta(2) integrin) is crucial for immune cell function.
- Reduced CD18 expression in PL/J mice leads to psoriasiform skin disease.
- The role of T cells in this CD18-deficient model requires further investigation.
Purpose of the Study:
- To analyze the impact of reduced CD18 gene expression on T cell function.
- To determine the contribution of T cells to psoriasiform dermatitis pathogenesis.
- To explore the relevance of this murine model for human polygenic inflammatory diseases.
Main Methods:
- Utilized CD18 hypomorphic and CD18 null mutant PL/J mouse models.
- Analyzed T cell populations (CD4+ and CD8+) in mouse skin.
- Investigated T cell emigration and experimental allergic contact dermatitis induction.
Main Results:
- CD18 hypomorphic mice exhibited increased CD4+ and CD8+ T cells in the skin.
- Depletion of CD4+ T cells, but not CD8+ T cells, resolved dermatitis.
- CD18 null mutants lacked T cell emigration and did not develop dermatitis.
- Th1-like cytokines were predominantly released by CD4+ T cells.
Conclusions:
- CD4+ T cells play a central role in the pathogenesis of CD18-deficient psoriasiform dermatitis.
- A gene dose effect of CD18 expression influences pathogenic T cell involvement.
- The CD18 hypomorphic mouse model is relevant for studying polygenic inflammatory skin diseases.