Mapping the human genetic architecture of COVID-19.
Mapping the human genetic architecture of COVID-19.
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DOI:
10.1038/s41586-021-03767-x
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发表时间:
2021-12
期刊:
影响因子:
64.8
通讯作者:
COVID-19 Host Genetics Initiative
中科院分区:
文献类型:
--
作者:
COVID-19 Host Genetics Initiative
The genetic make-up of an individual contributes to the susceptibility and response to viral infection. Although environmental, clinical and social factors have a role in the chance of exposure to SARS-CoV-2 and the severity of COVID-19, host genetics may also be important. Identifying host-specific genetic factors may reveal biological mechanisms of therapeutic relevance and clarify causal relationships of modifiable environmental risk factors for SARS-CoV-2 infection and outcomes. We formed a global network of researchers to investigate the role of human genetics in SARS-CoV-2 infection and COVID-19 severity. Here we describe the results of three genome-wide association meta-analyses that consist of up to 49,562 patients with COVID-19 from 46 studies across 19 countries. We report 13 genome-wide significant loci that are associated with SARS-CoV-2 infection or severe manifestations of COVID-19. Several of these loci correspond to previously documented associations to lung or autoimmune and inflammatory diseases. They also represent potentially actionable mechanisms in response to infection. Mendelian randomization analyses support a causal role for smoking and body-mass index for severe COVID-19 although not for type II diabetes. The identification of novel host genetic factors associated with COVID-19 was made possible by the community of human genetics researchers coming together to prioritize the sharing of data, results, resources and analytical frameworks. This working model of international collaboration underscores what is possible for future genetic discoveries in emerging pandemics, or indeed for any complex human disease. A global network of researchers was formed to investigate the role of human genetics in SARS-CoV-2 infection and COVID-19 severity; this paper reports 13 genome-wide significant loci and potentially actionable mechanisms in response to infection.
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影响因子:
30.8
作者:
Fingerlin, Tasha E.;Murphy, Elissa;Zhang, Weiming;Peljto, Anna L.;Brown, Kevin K.;Steele, Mark P.;Loyd, James E.;Cosgrove, Gregory P.;Lynch, David;Groshong, Steve;Collard, Harold R.;Wolters, Paul J.;Bradford, Williamson Z.;Kossen, Karl;Seiwert, Scott D.;du Bois, Roland M.;Garcia, Christine Kim;Devine, Megan S.;Gudmundsson, Gunnar;Isaksson, Helgi J.;Kaminski, Naftali;Zhang, Yingze;Gibson, Kevin F.;Lancaster, Lisa H.;Cogan, Joy D.;Mason, Wendi R.;Maher, Toby M.;Molyneaux, Philip L.;Wells, Athol U.;Moffatt, Miriam F.;Selman, Moises;Pardo, Annie;Kim, Dong Soon;Crapo, James D.;Make, Barry J.;Regan, Elizabeth A.;Walek, Dinesha S.;Daniel, Jerry J.;Kamatani, Yoichiro;Zelenika, Diana;Smith, Keith;McKean, David;Pedersen, Brent S.;Talbert, Janet;Kidd, Raven N.;Markin, Cheryl R.;Beckman, Kenneth B.;Lathrop, Mark;Schwarz, Marvin I.;Schwartz, David A.
通讯作者:
Schwartz, David A.
影响因子:
14.9
作者:
Ghoussaini M;Mountjoy E;Carmona M;Peat G;Schmidt EM;Hercules A;Fumis L;Miranda A;Carvalho-Silva D;Buniello A;Burdett T;Hayhurst J;Baker J;Ferrer J;Gonzalez-Uriarte A;Jupp S;Karim MA;Koscielny G;Machlitt-Northen S;Malangone C;Pendlington ZM;Roncaglia P;Suveges D;Wright D;Vrousgou O;Papa E;Parkinson H;MacArthur JAL;Todd JA;Barrett JC;Schwartzentruber J;Hulcoop DG;Ochoa D;McDonagh EM;Dunham I
通讯作者:
Dunham I
影响因子:
7.7
作者:
Bowden J;Del Greco M F;Minelli C;Davey Smith G;Sheehan NA;Thompson JR
通讯作者:
Thompson JR
DOI:
10.1126/science.abd4585
发表时间:
2020-10-23
期刊:
Science (New York, N.Y.)
影响因子:
--
作者:
Bastard P;Rosen LB;Zhang Q;Michailidis E;Hoffmann HH;Zhang Y;Dorgham K;Philippot Q;Rosain J;Béziat V;Manry J;Shaw E;Haljasmägi L;Peterson P;Lorenzo L;Bizien L;Trouillet-Assant S;Dobbs K;de Jesus AA;Belot A;Kallaste A;Catherinot E;Tandjaoui-Lambiotte Y;Le Pen J;Kerner G;Bigio B;Seeleuthner Y;Yang R;Bolze A;Spaan AN;Delmonte OM;Abers MS;Aiuti A;Casari G;Lampasona V;Piemonti L;Ciceri F;Bilguvar K;Lifton RP;Vasse M;Smadja DM;Migaud M;Hadjadj J;Terrier B;Duffy D;Quintana-Murci L;van de Beek D;Roussel L;Vinh DC;Tangye SG;Haerynck F;Dalmau D;Martinez-Picado J;Brodin P;Nussenzweig MC;Boisson-Dupuis S;Rodríguez-Gallego C;Vogt G;Mogensen TH;Oler AJ;Gu J;Burbelo PD;Cohen JI;Biondi A;Bettini LR;D'Angio M;Bonfanti P;Rossignol P;Mayaux J;Rieux-Laucat F;Husebye ES;Fusco F;Ursini MV;Imberti L;Sottini A;Paghera S;Quiros-Roldan E;Rossi C;Castagnoli R;Montagna D;Licari A;Marseglia GL;Duval X;Ghosn J;HGID Lab;NIAID-USUHS Immune Response to COVID Group;COVID Clinicians;COVID-STORM Clinicians;Imagine COVID Group;French COVID Cohort Study Group;Milieu Intérieur Consortium;CoV-Contact Cohort;Amsterdam UMC Covid-19 Biobank;COVID Human Genetic Effort;Tsang JS;Goldbach-Mansky R;Kisand K;Lionakis MS;Puel A;Zhang SY;Holland SM;Gorochov G;Jouanguy E;Rice CM;Cobat A;Notarangelo LD;Abel L;Su HC;Casanova JL
通讯作者:
Casanova JL
影响因子:
30.8
作者:
Bulik-Sullivan, Brendan K.;Loh, Po-Ru;Finucane, Hilary K.;Ripke, Stephan;Yang, Jian;Patterson, Nick;Daly, Mark J.;Price, Alkes L.;Neale, Benjamin M.
通讯作者:
Neale, Benjamin M.