Accès ouvert déclaré
2021
preprint
GWAS defines pathogenic signaling pathways and prioritizes drug targets for IgA nephropathy
Krzysztof Kiryluk, Elena Sánchez, Shu‐Feng Zhou, Francesca Zanoni, Lili Liu, Nikol Mladkova, Atlas Khan, Maddalena Marasà, Jun Y. Zhang, Olivia Balderes, Simone Sanna‐Cherchi, Andrew S. Bomback, Pietro A. Canetta, Gerald B. Appel, Jai Radhakrishnan, Hernán Trimarchi, Ben Sprangers, Daniel Cattran, Heather N. Reich, York Pei, Pietro Ravani, Kres̆imir Gales̃ić, Dita Maixnerová, Vladimı́r Tesař, Bénédicte Stengel, Marie Metzger, Guillaume Canaud, Nicolas Maillard, F. Berthoux, Laureline Berthelot, Évangéline Pillebout, Renato C. Monteiro, Raoul D. Nelson, Robert Wyatt, William E. Smoyer, John D. Mahan, Al-Akash Samhar, Guillermo Hidalgo, Alejandro Quiroga, Patricia L. Weng, Raji Sreedharan, David T. Selewski, Keefe Davis, Mahmoud Kallash, Tetyana L. Vasylyeva, Michelle N. Rheault, Aftab S. Chishti, Daniel Ranch, Scott E. Wenderfer, Dmitry Samsonov, Donna Claes, Akchurin Oleh, Dimitrios Goumenos, Μaria Stangou, Judit Nagy, Tibor Kovács, Enrico Fiaccadori, Antonio Amoroso, Cristina Barlassina, Daniele Cusi, Lucia Del Vecchio, Giovanni Giorgio Battaglia, Monica Bodria, Emanuela Boer, Luisa Bono, Giuliano Boscutti, Gianluca Caridi, Francesca Lugani, Gian Marco Ghiggeri, Rosanna Coppo, Licia Peruzzi, Vittoria Esposito, Ciro Esposito, Sandro Feriozzi, Rosaria Polci, Giovanni M. Frascà, Marco Galliani, Maurizio Garozzo, Adele Mitrotti, Loreto Gesualdo, Simona Granata, Gianluigi Zaza, Francesco Londrino, Riccardo Magistroni, Isabella Pisani, Andrea Magnano, Carmelita Marcantoni, Piergiorgio Messa, Renzo Mignani, Antonello Pani, Claudio Ponticelli, Dario Roccatello, Maurizio Salvadori, Erica Salvi, Domenico Santoro, Guido Gembillo, Silvana Savoldi, Donatella Spotti, Pasquale Zamboli, Claudia Izzi, Federico Alberici, Elisa Delbarba, Michał Florczak, Natalia Krata, Krzysztof Mucha, Leszek Pączek, Stanisław Niemczyk, Barbara Moszczuk, Małgorzata Pańczyk-Tomaszewska, Małgorzata Mizerska-Wasiak, Agnieszka Perkowska‐Ptasińska, Teresa Bączkowska, Magdalena Durlik, Krzysztof Pawlaczyk, Przemysław Sikora, Marcin Zaniew, Dorota Kamińska, Magdalena Krajewska, Izabella Kuźmiuk-Glembin, Zbigniew Heleniak, Barbara Bułło‐Piontecka, Tomasz Liberek, Alicja Dębska‐Ślizień, Tomasz Hryszko, Anna Materna‐Kiryluk, Monika Miklaszewska, Katarzyna Dyga, Edyta Machura, Katarzyna Siniewicz‐Luzeńczyk, Monika Pawlak-Bratkowska, Marcin Tkaczyk, Dariusz Runowski, Norbert Kwella, Dorota Drożdż, Ireneusz Habura, Florian Kronenberg, Larisa Prikhodina, David A. van Heel, Bertrand Fontaine, Chris Cotsapas, Cisca Wijmenga, André Franke, Vito Annese, Peter K. Gregersen, Sreeja Parameswaran, Matthew T. Weirauch, Leah C. Kottyan, John B. Harley, Hitoshi Suzuki, Ichiei Narita, Hajeong Lee, Dong Ki Kim, Yon Su Kim, Jin‐Ho Park, Belong Cho, Murim Choi, Ans Van Wijk, Ana Huerta, Elisabet Ars, José Ballarín, Sigrid Lundberg, Bruno Vogt, Laila‐Yasmin Mani, Yaşar Çalışkan, Jonathan Barratt, Thilini Abeygunaratne, Philip A. Kalra, Daniel P. Gale, Ulf Panzer, Thomas Rauen, Jürgen Floege, Pascal Schlosser, Arif B. Ekici, Kai‐Uwe Eckardt, Nan Chen, Jingyuan Xie, Richard P. Lifton, Ruth J. F. Loos, Eimear E. Kenny, Iuliana Ionita‐Laza, Anna Köttgen, Bruce A. Julian, Jan Novák, Francesco Scolari, Hong Zhang, Ali G. Gharavi
5Citations signalées, ce qui n’est pas une note de qualité
124Institutions déclarées
23Pays d’affiliation déclarés
Rattachement africain : us, cn, ar, be, ca, hr, cz, fr, gr, hu, it, pl, at, ru, gb, nl, de, jp, kr, es, se, ch, dk.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
ABSTRACT IgA nephropathy (IgAN) is a progressive form of kidney disease defined by glomerular deposition of IgA. We performed a genome-wide association study involving 10,146 kidney biopsy-diagnosed IgAN cases and 28,751 matched controls across 17 international cohorts. We defined 30 independent genome-wide significant risk loci jointly explaining 11% of disease risk. A total of 16 loci were novel, including TNFSF4, REL, CD28, CXCL8/PF4V1, LY86, LYN, ANXA3, TNFSF8/15, REEP3, ZMIZ1, RELA, ETS1, IGH, IRF8, TNFRSF13B and FCAR . The SNP-based heritability of IgAN was estimated at 23%. We observed a positive genetic correlation between IgAN and total serum IgA levels, allergy, tonsillectomy, and several infections, and a negative correlation with inflammatory bowel disease. All significant non-HLA loci shared with serum IgA levels had a concordant effect on the risk of IgAN. Moreover, IgAN loci were globally enriched in gene orthologs causing abnormal IgA levels when genetically manipulated in mice. The explained heritability was enriched in the regulatory elements of cells from the immune and hematopoietic systems and intestinal mucosa, providing support for the pathogenic role of extra-renal tissues. The polygenic risk of IgAN was associated with early disease onset, increased lifetime risk of kidney failure, as well as hematuria and several other traits in a phenome-wide association study of 590,515 individuals. In the comprehensive functional annotation analysis of candidate causal genes across genome-wide significant loci, we observed the convergence of biological candidates on a common set of inflammatory signaling pathways and cytokine ligand-receptor pairs, prioritizing potential new drug targets.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- GWAS defines pathogenic signaling pathways and prioritizes drug targets for IgA nephropathy
- Date Crossref
- 20/11/2021
- Éditeur
- openRxiv
- Type
- posted-content
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Renal Diseases and GlomerulopathiesGenetic Associations and EpidemiologyCeliac Disease Research and Management