GWAS for systemic sclerosis identifies multiple risk loci and highlights fibrotic and vasculopathy pathways

Carmen Pilar Simeón-Aznar, Elena López-Isac, Marialbert Acosta-Herrera, Martin Kerick, Shervin Assassi, Ansuman Satpathy, Jeffrey Granja, Maxwell Mumbach, Lorenzo Beretta, Patricia E. Carreira, Norberto Ortego-Centeno, Ivan Castellvi, Lara Bossini-Castillo, F. David Carmona, Gisela Orozco, Nicolas Hunzelmann, Jörg H. W. Distler, Andre Franke, Claudio Lunardi, Gianluca MoronciniArmando Gabrielli, Jeska de Vries-Bouwstra, Cisca Wijmenga, Bobby Koeleman, Annika Nordin, Leonid Padyukov, Anna-Maria Hoffmann-Vold, Benedicte A. Lie, Raquel Ríos, Jose Luis Callejas, José Antonio Vargas-Hitos, Rosa García-Portales, María Teresa Camps, Antonio Fernandez-Nebro, Maria Francisca González-Escribano, Francisco Jose García-Hernández, María Jesús Castillo, Mª Angeles Aguirre, Inmaculada Gómez-Gracia, B. Fernández-Gutiérrez, L. Rodríguez-Rodríguez, Paloma García de la Peña, Esther Francisca Vicente-Rabaneda, José Luis Andréu, Mónica Fernández de Castro, Francisco Javier López-Longo, Lina Patricia Martínez, Vicenç Fonollosa, Alfredo Chávez Guillén, Gerard Espinosa, Carles Tolosa-Vilella, Ana Pros, M. Rodríguez-Carballeira, Francisco J. Narváez, Manuel Rubio Rivas, None Ortiz-Santamaría, A.B. Madroñero, M.A. González-Gay, B. Díaz, L. Trapiella, A. Sousa, M.V. Egurbide, P. Fanlo-Mateo, L. Sáez-Comet, F. Díaz, None Hernández, E. Beltrán, J.A. Román-Ivorra, E. Grau, J.J. Alegre-Sancho, M. Freire, F.J Blanco-García, N. Oreiro, T. Witte, A. Kreuter, G. Riemekasten, Paolo Airò, César Magro-Checa, A.E. Voskuyl, Madelon C. Vonk, Roger Hesselstrand, Susanna Proudman, Wendy Stevens, Mandana Nikpour, Jane M. Zochling, Joanne Sahhar, Janet Roddy, Peter Nash, Kathleen Tymms, Maureen Rischmueller, S. Lester, Timothy Vyse, Ariane Herrick, Jane Worthington, Christopher Paul Denton, Yannick Allanore, Matthew A. Brown, Timothy R. D. J. Radstake, Carmen Fonseca, Howard Y. Chang, Maureen Mayes, Javier Martin

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Resum

Systemic sclerosis (SSc) is an autoimmune disease that shows one of the highest mortality rates among rheumatic diseases. We perform a large genome-wide association study (GWAS), and meta-analysis with previous GWASs, in 26,679 individuals and identify 27 independent genome-wide associated signals, including 13 new risk loci. The novel associations nearly double the number of genome-wide hits reported for SSc thus far. We define 95% credible sets of less than 5 likely causal variants in 12 loci. Additionally, we identify specific SSc subtype-associated signals. Functional analysis of high-priority variants shows the potential function of SSc signals, with the identification of 43 robust target genes through HiChIP. Our results point towards molecular pathways potentially involved in vasculopathy and fibrosis, two main hallmarks in SSc, and highlight the spectrum of critical cell types for the disease. This work supports a better understanding of the genetic basis of SSc and provides directions for future functional experiments.
Idioma originalAnglès
RevistaNature Communications
Volum10
Número1
DOIs
Estat de la publicacióPublicada - 2019

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