ENaC gene variants and their involvement in Covid19 severity

Eleni Koniari1, Kyriaki Hatziagapiou1,2, Alexandra Olti Nikola2

  • 1University Research Institute of Maternal and Child Health and Precision Medicine and UNESCO Chair on Adolescent Health Care, National and Kapodistrian University of Athens, 11527 Athens, Greece.

Biomedical Reports
|October 2, 2024
PubMed

Insights

Genetic variants in the epithelial sodium channel (ENaC) genes SCNN1A and SCNN1B were associated with COVID-19 susceptibility and severity. These findings suggest ENaC variants may play a role in coronavirus disease 2019 outcomes.

Area of Science:

  • Genetics
  • Infectious Diseases
  • Cardiology

Background:

  • Epidemiological studies suggest links between cardiovascular conditions and COVID-19, but causality and genetic factors remain unclear.
  • Understanding genetic predispositions is crucial for explaining variations in COVID-19 susceptibility and severity.

Purpose of the Study:

  • To investigate the association between 32 cardio-metabolic traits and COVID-19.
  • To identify specific genetic variants contributing to COVID-19 susceptibility and severity.

Main Methods:

  • A study involving 60 participants categorized into control, dyslipidemia, mild COVID-19, and severe COVID-19 groups.
  • Next-generation sequencing was used to analyze genes related to dyslipidemia and identify variants in COVID-19 patients.
  • Demographic, clinical, and laboratory data were collected.

Main Results:

  • A rare variant (c.112C>T:p.P38S) in the SCNN1A gene was found in the mild/asymptomatic COVID-19 group.
  • A rare variant (c.786G>A:p.T262T) in the SCNN1B gene was identified in the severe COVID-19 group.
  • These specific variants were absent in the control and dyslipidemia groups.

Conclusions:

  • Epithelial sodium channel (ENaC) gene variants are potentially associated with genetic susceptibility to COVID-19.
  • These findings support the existence of genetic factors influencing COVID-19 morbidity and mortality.
  • Further research into ENaC variants could elucidate COVID-19 risk and protective mechanisms.

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