Malt1 protease inactivation efficiently dampens immune responses but causes spontaneous autoimmunity
Mice, Knockout
Analysis of Variance
Encephalomyelitis, Autoimmune, Experimental
Fluorescent Antibody Technique
Autoimmunity
Enzyme-Linked Immunosorbent Assay
Immunoglobulin E
Colitis
Flow Cytometry
Adoptive Transfer
Immunohistochemistry
3. Good health
DNA-Binding Proteins
Killer Cells, Natural
Mice
Caspases
Immunoglobulin G
Animals
Gene Knock-In Techniques
Gene Silencing
DNA Primers
DOI:
10.15252/embj.201488987
Publication Date:
2014-10-16T05:38:34Z
AUTHORS (10)
ABSTRACT
AbstractThe protease activity of the paracaspase Malt1 has recently gained interest as a drug target for immunomodulation and the treatment of diffuse large B‐cell lymphomas. To address the consequences of Malt1 protease inactivation on the immune response in vivo, we generated knock‐in mice expressing a catalytically inactive C472A mutant of Malt1 that conserves its scaffold function. Like Malt1‐deficient mice, knock‐in mice had strong defects in the activation of lymphocytes, NK and dendritic cells, and the development of B1 and marginal zone B cells and were completely protected against the induction of autoimmune encephalomyelitis. Malt1 inactivation also protected the mice from experimental induction of colitis. However, Malt1 knock‐in mice but not Malt1‐deficient mice spontaneously developed signs of autoimmune gastritis that correlated with an absence of Treg cells, an accumulation of T cells with an activated phenotype and high serum levels of IgE and IgG1. Thus, removal of the enzymatic activity of Malt1 efficiently dampens the immune response, but favors autoimmunity through impaired Treg development, which could be relevant for therapeutic Malt1‐targeting strategies.
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