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Published on: May 6, 2013
Pathway-Specific Defects in T, B, and NK Cells and Age-Dependent Development of High IgE in Mice Heterozygous for a
Shelby M Hutcherson1, Jacquelyn R Bedsaul1, Joel L Pomerantz2
1Department of Biological Chemistry and Institute for Cell Engineering, The Johns Hopkins University School of Medicine, Baltimore, MD.
Insights
CARD11 mutations cause primary immunodeficiency. Mice with a dominant-negative CARD11 allele show impaired immune cell function and elevated IgE, explaining infection susceptibility in CARD11-associated atopy but not atopic dermatitis.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- CARD11 is crucial for immune cell signaling pathways like NF-κB.
- Mutations in CARD11 cause primary immunodeficiencies, including CARD11-associated atopy with dominant interference of NF-κB signaling (CADINS).
- CADINS arises from heterozygous loss-of-function CARD11 alleles acting as dominant negatives, leading to infections, asthma, and allergies.
Purpose of the Study:
- To investigate how heterozygous dominant-negative CARD11 alleles cause CADINS-specific symptoms.
- To understand the molecular mechanisms underlying CARD11-associated immunodeficiency and atopy.
Main Methods:
- Generation of mice expressing the human CARD11 R30W pathogenic allele (CARD11R30W/+).
- Analysis of immune cell function, signaling pathways, and serum IgE levels in these mice.
- Comparative assessment of T cell, B cell, and NK cell responses.
Main Results:
- CARD11R30W/+ mice exhibit impaired downstream signaling, leading to T, B, and NK cell dysfunction and immunodeficiency.
- Elevated serum IgE levels were observed in CARD11R30W/+ mice, but they did not develop spontaneous atopic dermatitis.
- Reduced regulatory T cell numbers were noted, with distinct signaling defects in T cells versus B cells and impaired NK cell IFN-γ production.
Conclusions:
- The CARD11 R30W allele causes significant immune defects, explaining the high infection susceptibility in CADINS patients.
- Elevated IgE alone is insufficient to trigger atopic symptoms in this model.
- Understanding CARD11 oligomerization and signaling is key to CADINS pathogenesis.
Abstract:
CARD11 is a multidomain scaffold protein required for normal activation of NF-κB, JNK, and mTOR during Ag receptor signaling. Germline CARD11 mutations cause at least three types of primary immunodeficiency including CARD11 deficiency, B cell expansion with NF-κB and T cell anergy (BENTA), and CARD11-associated atopy with dominant interference of NF-κB signaling (CADINS). CADINS is uniquely caused by heterozygous loss-of-function CARD11 alleles that act as dominant negatives. CADINS patients present with frequent respiratory and skin infections, asthma, allergies, and atopic dermatitis. However, precisely how a heterozygous dominant negative CARD11 allele leads to the development of this CADINS-specific cluster of symptoms remains poorly understood. To address this, we generated mice expressing the CARD11 R30W allele originally identified in patients. We find that CARD11R30W/+ mice exhibit impaired signaling downstream of CARD11 that leads to defects in T, B, and NK cell function and immunodeficiency. CARD11R30W/+ mice develop elevated serum IgE levels with 50% penetrance that becomes more pronounced with age, but do not develop spontaneous atopic dermatitis. CARD11R30W/+ mice display reduced regulatory T cell numbers, but not the Th2 expansion observed in other mice with diminished CARD11 activity. Interestingly, the presence of mixed CARD11 oligomers in CARD11R30W/+ mice causes more severe signaling defects in T cells than in B cells, and specifically impacts IFN-γ production by NK cells, but not NK cell cytotoxicity. Our findings help explain the high susceptibility of CADINS patients to infection and suggest that the development of high serum IgE is not sufficient to induce overt atopic symptoms.
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