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Published on: August 20, 2019
Identification and functional characterization of regulatory variants in DPP9 associated with COVID-19 severity
Gaëlle Farah1,2, Magali Torres1,2, Leo Henches3
1Aix-Marseille Univ, INSERM, TAGC, UMR1090, MarMaRa Institute, Marseille, France.
Background:
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection leads to a wide-range of clinical outcomes, which have been extensively studied through genome-wide association studies (GWAS).
Methods:
Starting from lead genetic variants associated with COVID-19 infection and severity, we identified a subset of non-coding candidate variants with potential regulatory functions. We combined bioinformatics analysis and functional screening in three cell lines to provide evidence for regulatory activity. We then performed a genetic study to test the association of our selected candidates with disease susceptibility followed by the functional validation of the risk haplotype.
Results:
We prioritized two DPP9 variants within a haplotype that increases the risk of severe COVID-19. This haplotype exhibited increased regulatory activity and altered transcription factor binding, suggesting its role in influencing COVID-19 severity by modulating DPP9 expression in immune and lung cell types.
Conclusions:
The interest of our study lies in the functional characterization of regulatory variants responsible for increased levels of DPP9 and lung damage observed in patients with severe COVID-19. These findings advance our understanding of genetic risk factors for COVID-19 and highlight functional SNPs that may guide future therapeutic research.
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