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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.
Background:
Caspase recruitment domain-containing protein 9 (CARD9) deficiency is an autosomal recessive primary immunodeficiency conferring human susceptibility to invasive fungal disease, including spontaneous central nervous system candidiasis (sCNSc). However, clinical characterization of sCNSc is variable, hindering its recognition. Furthermore, an in-depth understanding of the bases for this susceptibility has remained elusive.
Objectives:
We sought to comprehensively characterize sCNSc and to dissect the mechanisms by which a hypomorphic CARD9 mutation causes susceptibility to Candida species.
Methods:
We describe the clinical and radiologic findings of sCNSc caused by CARD9 deficiency in a French-Canadian cohort. We performed genetic, cellular, and molecular analyses to further decipher its pathophysiology.
Results:
In our French-Canadian series (n = 4) sCNSc had onset in adulthood (median, 38 years) and was often misinterpreted radiologically as brain malignancies; 1 patient had additional novel features (eg, endophthalmitis and osteomyelitis). CARD9 deficiency resulted from a hypomorphic p.Y91H mutation and allelic imbalance established in this population through founder effects. We demonstrate a consistent cellular phenotype of impaired GM-CSF responses. The ability of CARD9 to complex with B-cell CLL/lymphoma 10 (BCL10) and mucosa-associated lymphoid tissue lymphoma translocation protein 1 (MALT1) is intact in our series, arguing against its involvement in susceptibility to fungi. Instead, we show that the p.Y91H mutation impairs the ability of CARD9 to complex with Ras protein-specific guanine nucleotide-releasing factor 1 (RASGRF1), leading to impaired activation of nuclear factor κB and extracellular signal-regulated kinase (ERK) in monocytes and subsequent GM-CSF responses. Successful treatment of a second patient with adjunctive GM-CSF bolsters the clinical relevance of these findings.
Conclusions:
Hypomorphic CARD9 deficiency caused by p.Y91H results in adult-onset disease with variable penetrance and expressivity. Our findings establish the CARD9/RASGRF1/ERK/GM-CSF axis as critical to the pathophysiology of sCNSc.
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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