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Updated: Feb 5, 2026

Exploring Caspase Mutations and Post-Translational Modification by Molecular Modeling Approaches
Published on: October 13, 2022
Hypomorphic caspase activation and recruitment domain 11 (CARD11) mutations associated with diverse immunologic
Batsukh Dorjbal1, Jeffrey R Stinson1, Chi A Ma2
1Department of Pharmacology & Molecular Therapeutics, Uniformed Services University of the Health Sciences, Bethesda, Md.
Insights
Mutations in CARD11 (caspase activation and recruitment domain 11) cause a wider range of immune disorders than previously known. Functional studies are crucial for validating rare gene variants in various immune phenotypes.
Area of Science:
- Immunology
- Genetics
- Molecular Biology
Background:
- Caspase activation and recruitment domain 11 (CARD11) is a key scaffold protein in lymphocyte signaling.
- Germline CARD11 mutations are linked to primary immune disorders like SCID, B-cell expansion, and atopic disease.
- Whole-exome sequencing has increased the identification of CARD11 mutations.
Purpose of the Study:
- To investigate the molecular functions of diverse CARD11 variants.
- To define the spectrum of clinical phenotypes associated with heterozygous CARD11 loss-of-function alleles.
Main Methods:
- Utilized cell transfections and primary T-cell assays.
- Evaluated the signaling and functional impact of CARD11 variants.
Main Results:
- Identified novel heterozygous CARD11 mutations presenting with diverse immunologic phenotypes beyond atopy.
- Observed phenotypes resembling STAT3, DOCK8, CVID, neutropenia, and IPEX-like syndromes.
- Pathogenic variants demonstrated dominant negative activity, primarily within CARD and coiled-coil domains.
Conclusions:
- CARD11 mutations are associated with a broader spectrum of human immune disorders than previously recognized.
- Functional validation is essential for rare gene variants, even when found in unexpected clinical presentations.
Background:
Caspase activation and recruitment domain 11 (CARD11) encodes a scaffold protein in lymphocytes that links antigen receptor engagement with downstream signaling to nuclear factor κB, c-Jun N-terminal kinase, and mechanistic target of rapamycin complex 1. Germline CARD11 mutations cause several distinct primary immune disorders in human subjects, including severe combined immune deficiency (biallelic null mutations), B-cell expansion with nuclear factor κB and T-cell anergy (heterozygous, gain-of-function mutations), and severe atopic disease (loss-of-function, heterozygous, dominant interfering mutations), which has focused attention on CARD11 mutations discovered by using whole-exome sequencing.
Objectives:
We sought to determine the molecular actions of an extended allelic series of CARD11 and to characterize the expanding range of clinical phenotypes associated with heterozygous CARD11 loss-of-function alleles.
Methods:
Cell transfections and primary T-cell assays were used to evaluate signaling and function of CARD11 variants.
Results:
Here we report on an expanded cohort of patients harboring novel heterozygous CARD11 mutations that extend beyond atopy to include other immunologic phenotypes not previously associated with CARD11 mutations. In addition to (and sometimes excluding) severe atopy, heterozygous missense and indel mutations in CARD11 presented with immunologic phenotypes similar to those observed in signal transducer and activator of transcription 3 loss of function, dedicator of cytokinesis 8 deficiency, common variable immunodeficiency, neutropenia, and immune dysregulation, polyendocrinopathy, enteropathy, X-linked-like syndrome. Pathogenic variants exhibited dominant negative activity and were largely confined to the CARD or coiled-coil domains of the CARD11 protein.
Conclusion:
These results illuminate a broader phenotypic spectrum associated with CARD11 mutations in human subjects and underscore the need for functional studies to demonstrate that rare gene variants encountered in expected and unexpected phenotypes must nonetheless be validated for pathogenic activity.
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