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January 22, 2026International Journal of Molecular Sciences1 citationsOpen Access

IFNAR2 p.F8S Variant Associates with Severe COVID-19 and Adaptive Immune Cell Activation Modulation

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FMF MalvestitiALAngela LombardiFGF Gentile

Key Points

  • The research aimed to identify genetic factors associated with severe COVID-19, focusing on protein-altering variants.
  • Analyzed genetic variants in patients requiring lung transplants and in the Milan FOGS cohort.
  • Performed statistical analysis to establish association between the p.F8S variant and disease severity.
  • Conducted transcriptomic analysis of PBMCs at the height of infection.
  • Used functional flow cytometry to examine variations in immune cell expression of IFNAR2.
  • The p.F8S variant was associated with a 1.73-fold increased risk of severe COVID-19.
  • Carriers exhibited elevated IL-6 levels, indicating a stronger inflammatory response.
  • Transcriptomic data revealed immune pathway upregulation in p.F8S carriers.
  • Flow cytometry showed increased IFNAR2 presence in dendritic cells but reduced levels in B lymphocytes.

Abstract

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection has a wide range of clinical manifestations modulated by genetic factors. The aim of this study was to identify genetic determinants of severe COVID-19 affecting protein sequence to gain insight into disease pathogenesis. Variants prioritized in two patients requiring lung transplant were tested in the Milan FOGS cohort (487/869 cases/controls), highlighting an independent association between the p.F8S low-frequency variant of interferon alpha receptor 2 gene (IFNAR2) and severe disease (OR = 1.73 1.24–2.42, p = 0.001), replicated in the COVID-19 Host Genetics Initiative cohort (26,167/2,061,934 cases/controls). In the FOGS cohort, the p.F8S variant was linked to higher circulating IL-6 levels. In keeping, bulk transcriptomic analysis in PBMCs at the peak of infection (n = 57) showed that carriers of the p.F8S variant had upregulation of immune signaling and pathogens response (p < 0.05). Functional flow cytometry experiments in healthy donors (n = 12) revealed that membrane IFNAR2 protein expression was reduced in B lymphocytes, but higher in dendritic cells (p < 0.05). Finally, by interrogating a public scRNAseq resource of PBMC of people with COVID-19, we showed that p.F8S carriers had upregulation of immune pathways specifically in dendritic cells (p < 0.05). These results suggest that the p.F8S variant may influence COVID-19 severity by enhancing adaptive immune response, thereby favoring inflammation.

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Cite This Study

Malvestiti et al. (2026) studied this question.

synapsesocial.com/papers/6971bea8642b1836717e347fhttps://doi.org/10.3390/ijms27020992
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