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  • A prenylated dsRNA sensor p...
    Wickenhagen, Arthur; Sugrue, Elena; Lytras, Spyros; Kuchi, Srikeerthana; Noerenberg, Marko; Turnbull, Matthew L; Loney, Colin; Herder, Vanessa; Allan, Jay; Jarmson, Innes; Cameron-Ruiz, Natalia; Varjak, Margus; Pinto, Rute M; Lee, Jeffrey Y; Iselin, Louisa; Palmalux, Natasha; Stewart, Douglas G; Swingler, Simon; Greenwood, Edward J D; Crozier, Thomas W M; Gu, Quan; Davies, Emma L; Clohisey, Sara; Wang, Bo; Trindade Maranhão Costa, Fabio; Freire Santana, Monique; de Lima Ferreira, Luiz Carlos; Murphy, Lee; Fawkes, Angie; Meynert, Alison; Grimes, Graeme; Da Silva Filho, Joao Luiz; Marti, Matthias; Hughes, Joseph; Stanton, Richard J; Wang, Eddie C Y; Ho, Antonia; Davis, Ilan; Jarrett, Ruth F; Castello, Alfredo; Robertson, David L; Semple, Malcolm G; Openshaw, Peter J M; Palmarini, Massimo; Lehner, Paul J; Baillie, J Kenneth; Rihn, Suzannah J; Wilson, Sam J

    Science (American Association for the Advancement of Science), 2021-Oct-29, 2021-10-29, 20211029, Letnik: 374, Številka: 6567
    Journal Article

    Inherited genetic factors can influence the severity of COVID-19, but the molecular explanation underpinning a genetic association is often unclear. Intracellular antiviral defenses can inhibit the replication of viruses and reduce disease severity. To better understand the antiviral defenses relevant to COVID-19, we used interferon-stimulated gene (ISG) expression screening to reveal that 2′-5′-oligoadenylate synthetase 1 (OAS1), through ribonuclease L, potently inhibits severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). We show that a common splice-acceptor single-nucleotide polymorphism (Rs10774671) governs whether patients express prenylated OAS1 isoforms that are membrane-associated and sense-specific regions of SARS-CoV-2 RNAs or if they only express cytosolic, nonprenylated OAS1 that does not efficiently detect SARS-CoV-2. In hospitalized patients, expression of prenylated OAS1 was associated with protection from severe COVID-19, suggesting that this antiviral defense is a major component of a protective antiviral response.