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GWAS and meta-analysis identifies 49 genetic variants underlying critical Covid-19
- Source :
- Pairo-Castineira, E, Rawlik, K, Bretherick, A D, Qi, T, Wu, Y, Nassiri, I, McConkey, G A, Zechner, M, Klaric, L, Griffiths, F, Oosthuyzen, W, Kousathanas, A, Richmond, A, Millar, J, Russell, C D, Malinauskas, T, Thwaites, R, Morrice, K, Keating, S, Maslove, D M, Nichol, A D, Semple, M G, Knight, J, Shankar-Hari, M, Summers, C, Hinds, C, Horby, P, Ling, L, McAuley, D F, Montgomery, H, Openshaw, P J M, Begg, C, Walsh, T S, Tenesa, A, Flores, C, Riancho, J A, Rojas-Martinez, A, Lapunzina, P, Yang, J, Ponting, C P, Wilson, J F, Vitart, V, Abedalthagafi, M S, Luchessi, A, Parra, E J, Cruz, R, Carracedo, A, Fawkes, A, Murphy, L, Rowan, K, Pereira, A C, Law, A, Fairfax, B P, Clohisey Hendry, S & Baillie, J K 2023, ' GWAS and meta-analysis identifies 49 genetic variants underlying critical Covid-19 ', Nature, vol. 617, no. 7962, pp. 764-768 . https://doi.org/10.1038/s41586-023-06034-3
- Publication Year :
- 2023
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Abstract
- Critical illness in COVID-19 is an extreme and clinically homogeneous disease phenotype that we have previously shown 1 to be highly efficient for discovery of genetic associations 2. Despite the advanced stage of illness at presentation, we have shown that host genetics in patients who are critically ill with COVID-19 can identify immunomodulatory therapies with strong beneficial effects in this group 3. Here we analyse 24,202 cases of COVID-19 with critical illness comprising a combination of microarray genotype and whole-genome sequencing data from cases of critical illness in the international GenOMICC (11,440 cases) study, combined with other studies recruiting hospitalized patients with a strong focus on severe and critical disease: ISARIC4C (676 cases) and the SCOURGE consortium (5,934 cases). To put these results in the context of existing work, we conduct a meta-analysis of the new GenOMICC genome-wide association study (GWAS) results with previously published data. We find 49 genome-wide significant associations, of which 16 have not been reported previously. To investigate the therapeutic implications of these findings, we infer the structural consequences of protein-coding variants, and combine our GWAS results with gene expression data using a monocyte transcriptome-wide association study (TWAS) model, as well as gene and protein expression using Mendelian randomization. We identify potentially druggable targets in multiple systems, including inflammatory signalling (JAK1), monocyte-macrophage activation and endothelial permeability (PDE4A), immunometabolism (SLC2A5 and AK5), and host factors required for viral entry and replication (TMPRSS2 and RAB2A).
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Pairo-Castineira, E, Rawlik, K, Bretherick, A D, Qi, T, Wu, Y, Nassiri, I, McConkey, G A, Zechner, M, Klaric, L, Griffiths, F, Oosthuyzen, W, Kousathanas, A, Richmond, A, Millar, J, Russell, C D, Malinauskas, T, Thwaites, R, Morrice, K, Keating, S, Maslove, D M, Nichol, A D, Semple, M G, Knight, J, Shankar-Hari, M, Summers, C, Hinds, C, Horby, P, Ling, L, McAuley, D F, Montgomery, H, Openshaw, P J M, Begg, C, Walsh, T S, Tenesa, A, Flores, C, Riancho, J A, Rojas-Martinez, A, Lapunzina, P, Yang, J, Ponting, C P, Wilson, J F, Vitart, V, Abedalthagafi, M S, Luchessi, A, Parra, E J, Cruz, R, Carracedo, A, Fawkes, A, Murphy, L, Rowan, K, Pereira, A C, Law, A, Fairfax, B P, Clohisey Hendry, S & Baillie, J K 2023, ' GWAS and meta-analysis identifies 49 genetic variants underlying critical Covid-19 ', Nature, vol. 617, no. 7962, pp. 764-768 . https://doi.org/10.1038/s41586-023-06034-3
- Accession number :
- edsair.od......3094..43b7f0a3242c0f8452c02737c7d09b92
- Full Text :
- https://doi.org/10.1038/s41586-023-06034-3