A Neanderthal OAS1 isoform protects individuals of European ancestry against COVID-19 susceptibility and severity

混淆 优势比 医学 免疫学 内科学 生物
作者
Sirui Zhou,Guillaume Butler‐Laporte,Tomoko Nakanishi,David Morrison,Jonathan Afilalo,Marc Afilalo,Lætitia Laurent,Maik Pietzner,Nicola D. Kerrison,Kaiqiong Zhao,Elsa Brunet‐Ratnasingham,Danielle Henry,Nofar Kimchi,Zaman Afrasiabi,Nardin Rezk,Meriem Bouab,Louis Petitjean,Charlotte Guzman,Xiaoqing Xue,Chris Tselios
出处
期刊:Nature Medicine [Nature Portfolio]
卷期号:27 (4): 659-667 被引量:294
标识
DOI:10.1038/s41591-021-01281-1
摘要

To identify circulating proteins influencing Coronavirus Disease 2019 (COVID-19) susceptibility and severity, we undertook a two-sample Mendelian randomization (MR) study, rapidly scanning hundreds of circulating proteins while reducing bias due to reverse causation and confounding. In up to 14,134 cases and 1.2 million controls, we found that an s.d. increase in OAS1 levels was associated with reduced COVID-19 death or ventilation (odds ratio (OR) = 0.54, P = 7 × 10−8), hospitalization (OR = 0.61, P = 8 × 10−8) and susceptibility (OR = 0.78, P = 8 × 10−6). Measuring OAS1 levels in 504 individuals, we found that higher plasma OAS1 levels in a non-infectious state were associated with reduced COVID-19 susceptibility and severity. Further analyses suggested that a Neanderthal isoform of OAS1 in individuals of European ancestry affords this protection. Thus, evidence from MR and a case–control study support a protective role for OAS1 in COVID-19 adverse outcomes. Available pharmacological agents that increase OAS1 levels could be prioritized for drug development. A variant of the OAS1 gene, which encodes an enzyme that is critical for the innate immune response to viral infections, is associated with decreased risk of death in patients with COVID-19.
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