Mechanisms underlying genetic susceptibility to multisystem inflammatory syndrome in children (MIS-C)
Janet Chou1, Craig D Platt1, Saddiq Habiballah1
1Division of Immunology, Boston Children's Hospital, Harvard Medical School, Boston, Mass.
Insights
Genetic defects in XIAP and CYBB are linked to multisystem inflammatory syndrome in children (MIS-C). These findings, along with prior SOCS1 research, highlight genetic predispositions to severe COVID-19 complications in children.
Area of Science:
- Immunology
- Genetics
- Pediatrics
Background:
- Multisystem inflammatory syndrome in children (MIS-C) is a serious complication of SARS-CoV-2 infection, often affecting otherwise healthy children.
- Cardiovascular dysfunction is a common feature of MIS-C, alongside multiorgan inflammation.
- Previous research identified haploinsufficiency of suppressor of cytokine signaling 1 (SOCS1) as a genetic risk factor for MIS-C.
Purpose of the Study:
- To uncover additional genetic factors contributing to severe MIS-C.
- To investigate the genetic underpinnings of susceptibility to SARS-CoV-2-associated MIS-C.
Main Methods:
- Whole exome sequencing was conducted on pediatric MIS-C patients in a prospective, single-center cohort study.
- Functional validation of identified genetic variants was performed using peripheral blood mononuclear cells (PBMCs) from recovered patients.
- Analysis included patients with MIS-C, focusing on genetic defects and their impact on immune cell transcriptomes.
Main Results:
- Genetic defects in XIAP (X-linked inhibitor of apoptosis) and CYBB (cytochrome b-245, beta subunit) were identified in two boys with MIS-C.
- A genetic diagnosis was established in 17% (3 of 18) of MIS-C patients, including those with prior SOCS1 findings.
- Patients with SOCS1, XIAP, or CYBB defects showed an inflammatory immune cell transcriptome with altered IL-18, oncostatin M, and NF-κB pathway gene expression, persisting post-recovery.
Conclusions:
- The MIS-C cohort demonstrated an enrichment of monogenic susceptibility to inflammation, despite the rarity of such disorders in the general population.
- These findings underscore the importance of genetic factors in the pathogenesis of MIS-C.
- Next-generation sequencing is recommended for evaluating previously healthy children diagnosed with MIS-C.
Background:
Multisystem inflammatory syndrome in children (MIS-C) is a pediatric complication of severe acute respiratory syndrome coronavirus 2 infection that is characterized by multiorgan inflammation and frequently by cardiovascular dysfunction. It occurs predominantly in otherwise healthy children. We previously reported haploinsufficiency of suppressor of cytokine signaling 1 (SOCS1), a negative regulator of type I and II interferons, as a genetic risk factor for MIS-C.
Objectives:
We aimed to identify additional genetic mechanisms underlying susceptibility to severe acute respiratory syndrome coronavirus 2-associated MIS-C.
Methods:
In a single-center, prospective cohort study, whole exome sequencing was performed on patients with MIS-C. The impact of candidate variants was tested by using patients' PBMCs obtained at least 7 months after recovery.
Results:
We enrolled 18 patients with MIS-C (median age = 8 years; interquartile range = 5-12.25 years), of whom 89% had no conditions other than obesity. In 2 boys with no significant infection history, we identified and validated hemizygous deleterious defects in XIAP, encoding X-linked inhibitor of apoptosis, and CYBB, encoding cytochrome b-245, beta subunit. Including the previously reported SOCS1 haploinsufficiency, a genetic diagnosis was identified in 3 of 18 patients (17%). In contrast to patients with mild COVID-19, patients with defects in SOCS1, XIAP, or CYBB exhibit an inflammatory immune cell transcriptome with enrichment of differentially expressed genes in pathways downstream of IL-18, oncostatin M, and nuclear factor κB, even after recovery.
Conclusions:
Although inflammatory disorders are rare in the general population, our cohort of patients with MIS-C was enriched for monogenic susceptibility to inflammation. Our results support the use of next-generation sequencing in previously healthy children who develop MIS-C.
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