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.

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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