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Published on: November 6, 2019
Mendelian traits causing susceptibility to mucocutaneous fungal infections in human subjects
Karin R Engelhardt1, Bodo Grimbacher
1Department of Immunology and Molecular Pathology, Royal Free Hospital and University College London, London, United Kingdom.
Abstract:
Mucocutaneous candidiasis and dermatophyte infections occur either in isolation or alongside other symptoms in patients with various primary immunodeficiency diseases with diverse genetic defects, which result in impaired IL-17 immunity, IL-22 immunity, or both. In patients with chronic mucocutaneous candidiasis, disease-associated polymorphisms in DECTIN1 act on the level of fungal recognition, whereas mutations in caspase recruitment domain-containing protein 9 (CARD9) disturb the subsequent spleen tyrosine kinase 2-CARD9/BCL10/MALT1-driven signaling cascade, impairing nuclear factor κB-mediated maturation of antigen-presenting cells and priming of naive T cells to differentiate into the T(H)17 cell lineage. T(H)17-priming cytokines signal through the transcription factor signal transducer and activator of transcription (STAT) 3, which in turn induces the T(H)17 lineage-determining transcription factor retinoic acid-related orphan receptor γt. Dominant-negative mutations in STAT3 result in reduced numbers of T(H)17 cells, causing localized candidiasis in patients with hyper-IgE syndrome. In patients with chronic mucocutaneous candidiasis, gain-of-function STAT1 mutations shift the cellular response toward T(H)17 cell-inhibiting cytokines. T(H)17 cells secrete IL-17 and IL-22, which are cytokines with potent antifungal properties, including production of antimicrobial peptides and activation and recruitment of neutrophils. Neutrophils mediate microbial killing through phagocytosis, degranulation, and neutrophil extracellular traps. Mutations in IL17F and IL17R in patients with chronic mucocutaneous candidiasis, as well as neutralizing autoantibodies against IL-17 and IL-22 in patients with autoimmune polyendocrinopathy-candidiasis-ectodermal dystrophy, directly impair IL-17 and IL-22 immunity.
Insights
Impaired IL-17 and IL-22 immunity, due to genetic defects, cause mucocutaneous candidiasis and fungal infections. These defects disrupt fungal recognition, signaling pathways, and T(H)17 cell differentiation, impacting antifungal defenses.
Area of Science:
- Immunology
- Genetics
- Infectious Diseases
Background:
- Mucocutaneous candidiasis and dermatophyte infections are linked to primary immunodeficiencies affecting IL-17 and IL-22 immunity.
- Genetic defects impair fungal recognition, signaling cascades (e.g., CARD9 pathway), and T(H)17 cell differentiation.
Purpose of the Study:
- To elucidate the genetic basis and molecular mechanisms underlying impaired IL-17/IL-22 immunity in patients with chronic mucocutaneous candidiasis and related infections.
- To understand the role of specific genes (DECTIN1, CARD9, STAT3, STAT1, IL17F, IL17R) and signaling pathways in antifungal immunity.
Main Methods:
- Analysis of genetic polymorphisms and mutations in patients with primary immunodeficiencies.
- Investigation of signaling pathways involving CARD9, STAT3, and STAT1.
- Assessment of T(H)17 cell differentiation and cytokine production (IL-17, IL-22).
Main Results:
- Polymorphisms in DECTIN1 affect fungal recognition; CARD9 mutations disrupt downstream signaling, impairing antigen-presenting cell maturation and T(H)17 priming.
- STAT3 mutations reduce T(H)17 cell numbers, leading to candidiasis; STAT1 gain-of-function mutations skew responses away from T(H)17-promoting cytokines.
- Mutations in IL17F, IL17R, or autoantibodies against IL-17/IL-22 directly compromise IL-17 and IL-22 mediated antifungal immunity.
Conclusions:
- Impaired IL-17 and IL-22 immunity, driven by diverse genetic defects, underlies susceptibility to mucocutaneous candidiasis and dermatophyte infections.
- Understanding these pathways is crucial for diagnosing and potentially treating primary immunodeficiencies affecting fungal immunity.
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