Accès ouvert déclaré
2026
preprint
Trans -eQTLs reveal the architecture of human gene regulatory networks
C.A. Robert Warmerdam, Harm-Jan Westra, Adriaan van der Graaf, Marc Jan Bonder, Patrick Deelen, Tijs van Lieshout, Anke Jannie Landman, Mihkel Jesse, Benjamin J. Strober, Toni Boltz, Sandra Lapinska, Sini Nagpal, Manke Xie, Darwin Tay, Holger Kirsten, Haroon Naeem, Venket Raghavan, Aiman Farzeen, A Teumer, Marie-Julie Favé, Elodie Persyn, Alex Tokolyi, René Pool, Jouke Jan Hottenga, Ruth D. Rodríguez, María Rivas-Torrubia, Binisha H. Mishra, Brandon Pierce, Lin Tong, Qingbo S. Wang, Takanori Hasegawa, Surya B. Chhetri, Diptavo Dutta, Stefan Weiss, Théo Dupuis, Leo-Pekka Lyytikäinen, Pashupati P. Mishra, Wood Ar, Katie L. Burnham, Jia Wen, Evans K. Cheruiyot, Collins K. Boahen, Rick J. Jansen, Knut Krohn, Joachim Thiery, Kensuke Daida, J. Raphael Gibbs, Joost Verlouw, Viktorija Kukushkina, Reedik Mägi, John Budde, MI Johnson, Jessie Sanford, Eline P. E. Slagboom, Frank Beutner, Markus Loeffler, Javier Martı́n, E. Raitoharju, Muhammad G. Kibriya, Farzana Jasmine, Matthias Nauck, The HELIOS Study team, Juan Carlos Souto, Ángel Martínez-Pérez, M. Arfan Ikram, J Mykkänen, Katja Pahkala, Suvi P. Rovio, Laura M. Raffield, Marleen M. J. van Greevenbroek, Carla Kallen, Casper G. Schalkwijk, Jan H. Veldink, Krista Freimann, Martijn Vochteloo, Anoek Kooijmans, Lilia Ouadah, Annique Claringbould, Yunfeng Huang, Julien Bryois, Ellen A. Tsai, Matthias Heinig, Monique G.P. van der Wijst, Vinod Kumar, Peter M. Visscher, McRae Af, G. Montgomery, Yun Li, Julian C. Knight, Andrew Singleton, Luigi Ferrucci, Timothy M. Frayling, Andrew Brown, José Manuel Soria, Uwe Völker, Alexis Battle, Yukinori Okada, Koichi Fukunaga, Ho Namkoong, Habibul Ahsan, Terho Lehtimäki, Mika Kähönen, Olli T. Raitakari, M. Alarcon-Riquelme, Guillermo Barturen, Brenda W.J.H Penninx, Paul Dirk, Michael Inouye, Philip Awadalla, Yun Ju Sung, Carlos Cruchaga, Joyce van Meurs, H. Prokisch, Annette Peters, Christian Gieger, Cornelis Blauwendraat, Younes Mokrab, Emma E. Davenport, Markus Scholz, Marie Chiew Shia Loh, JC Chambers, Greg Gibson, Dorret I. Boomsma, Ana Viñuela, Bogdan Pasaniuc, RA Ophoff, Alkes L. Price, Kaur Alasoo, Zoltán Kutalik, Tonu Esko, Lude Franke, Urmo Võsa
2Citations signalées — pas une note de qualité
97Institutions déclarées
16Pays d’affiliation déclarés
Résumé fourni par la source
Abstract Many non-coding variants influence complex traits and diseases through gene regulation, yet the mechanisms linking these variants to downstream biology remain poorly understood. Here, we present eQTLGen Phase 2 , a comprehensive genome-wide analysis of gene expression quantitative trait loci (eQTLs) in 43,301 blood samples from 52 datasets. Beyond local cis -effects, this sample size enabled the first systematic mapping of trans -eQTLs at scale. We identify cis -eQTLs for nearly all expressed genes (94.7%) and trans -eQTLs for over half (56.2%). Second, by colocalizing cis -eQTLs with trans -eQTLs, we infer a directed gene regulatory network comprising 47,554 directed gene regulatory relationships. These networks reveal how genetic perturbations in upstream regulators produce dose-dependent downstream effects, supported by Perturb-seq and ChIP-seq data. Third, integrating this network with 87 genome-wide association studies allows us to systematically prioritize trait-relevant pathways and candidate genes. Variants exerting both cis – and trans -effects are markedly more likely to colocalize with trait associations than cis -only variants, delineating a subset of functionally active cis -eQTLs from a large group with limited downstream impact. This distinction provides a conceptual framework for identifying regulatory variants that truly mediate complex trait biology. Together, these results provide a publicly available resource of cis – and trans -eQTLs and an in vivo scaffold for human gene-regulatory networks, elucidating how propagation of cis -effects modulates complex disease.
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Contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.
- Titre Crossref
- <i>Trans</i>
-eQTLs reveal the architecture of human gene regulatory networks
- Date Crossref
- 05/02/2026
- 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 ne compte pas comme une seconde source scientifique indépendante.
Institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
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