Related Experiment Video

Updated: Jan 10, 2026

Bacterial Phylum Spirochaetes
01:30

Bacterial Phylum Spirochaetes

Published on: June 12, 2025

548

Impaired RASGRF1/ERK-mediated GM-CSF response characterizes CARD9 deficiency in French-Canadians

Christina Gavino1, Nancy Hamel2, Ji Bin Zeng1

  • 1Infectious Disease Susceptibility Program, McGill University Health Centre (MUHC) and Research Institute-MUHC (RI-MUHC), Montreal, Quebec, Canada.

Abstract

Insights

Caspase recruitment domain-containing protein 9 (CARD9) deficiency causes invasive fungal infections, including brain candidiasis. A specific mutation impairs CARD9

Area of Science:

  • Immunology
  • Genetics
  • Neurology

Background:

  • Primary immunodeficiencies can lead to invasive fungal diseases.
  • Caspase recruitment domain-containing protein 9 (CARD9) deficiency confers susceptibility to invasive fungal infections.
  • Spontaneous central nervous system candidiasis (sCNSc) is a rare complication of CARD9 deficiency with variable clinical presentation.

Purpose of the Study:

  • To comprehensively characterize sCNSc in patients with CARD9 deficiency.
  • To elucidate the molecular mechanisms underlying CARD9 deficiency-associated susceptibility to Candida species.

Main Methods:

  • Clinical and radiologic data from a French-Canadian cohort with CARD9 deficiency were analyzed.
  • Genetic, cellular, and molecular analyses were performed to investigate the pathophysiology of sCNSc.
  • Specific protein interactions and signaling pathways (CARD9, BCL10, MALT1, RASGRF1, NF-κB, ERK, GM-CSF) were examined.

Main Results:

  • sCNSc in this cohort presented in adulthood with variable features, including endophthalmitis and osteomyelitis, and was often misdiagnosed as brain malignancy.
  • A hypomorphic p.Y91H mutation in CARD9, common in the French-Canadian population due to founder effects, was identified as the cause of deficiency.
  • The p.Y91H mutation impairs CARD9's interaction with RASGRF1, leading to reduced nuclear factor κB and extracellular signal-regulated kinase activation in monocytes and diminished granulocyte-macrophage colony-stimulating factor (GM-CSF) responses.
  • Impaired GM-CSF responses were a consistent cellular phenotype.

Conclusions:

  • Hypomorphic CARD9 deficiency, specifically the p.Y91H mutation, causes adult-onset sCNSc with variable clinical expression.
  • The CARD9/RASGRF1/ERK/GM-CSF signaling axis is crucial for host defense against Candida and its impairment underlies sCNSc pathophysiology.
  • Adjunctive GM-CSF therapy showed potential clinical benefit.

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