Accès ouvert déclaré
2026
article
Multi-cohort proteogenomic analyses reveal genetic effects across the proteome and diseasome
Mine Koprulu, Karl Smith-Byrne, Brian Richard Ferolito, Erin Macdonald-Dunlop, Jian’an Luan, Åsa K. Hedman, Chibuzor Franklin Ogamba, Jurgis Kuliesius, L. Repetto, Anna Ramisch, Fahim Abbasi, Johan Ärnlöv, Themistocles L. Assimes, Hanna M. Björck, Sophia Björkander, Morten Bøttcher, Adam Stuart Butterworth, Z M Chen, Kelly Cho, Robert Joseph Clarke, Simon Riddington Cox, K Czene, John Danesh, George Dedoussis, Sölve Elmståhl, Niclas Eriksson, Per Eriksson, Tõnu Esko, Aida Ferreiro-Iglesias, Paul William Franks, Jingyuan Fu, J. Michael Gaziano, Mohsen Ghanbari, Christian Gieger, Arthur Gilly, Harald Grallert, Marc James Gunter, Stefan Gustafsson, Andreas Göteson, P.F. Hall, Oskar Hansson, Sarah E. Harris, Caroline Hayward, C Herder, Natalia Hernandez-Pacheco, Ziad Hijazi, Robert F. Hillary, J C Hopewell, Shixian Hu, Shih-Jen Hwang, Christina Jern, Åsa Johansson, Lina Jonsson, Anette Kalnapenkis, Nicola Dorothy Kerrison, Pik Fang Kho, Lucija Klarić, Leonhard Kohleick, Julia Kraft, Mikael Landén, Daniel Levy, Liming Li, L Lind, Jirong Long, Niklas Mattsson, Erik Melén, Simon Kebede Merid, Philipp Mertins, Karl Michaëlsson, Peter Möller, Federico Murgia, Mette Nyegaard, Young-Chan Park, E R Pearson, James Peters, J Petrie, Grace Png, Ozren Polašek, Bram P. Prins, Stephan Ripke, M Roden, Palle Duun Rohde, Saredo Said, Xia Shen, Jochen M. Schwenk, A Siegbahn, J. Gustav Smith, Tara M. Stanne, Karsten Suhre, Johan Sundström, Barbara Thorand, Elsa Valdés‐Márquez, Costanza L. Vallerga, J B J van Meurs, Ana Viñuela, Urmo Võsa, Lars Wallentin, Robin G. Walters, Nicholas John Wareham, Joachim Eduard Weber, Rinse K. Weersma, James F. Wilson, Simon Winther, Summaira Yasmeen, Daniela Zanetti, Eleftheria Zeggini, Jing Hua Zhao, Alexandra Zhernakova, Daria V. Zhernakova, Matthias Ziehm, Benedikt Mathias Kessler, Alexandre C. Pereira, A Malarstig, Maik Pietzner, Claudia Langenberg
7Citations signalées — pas une note de qualité
63Institutions déclarées
18Pays d’affiliation déclarés
Résumé fourni par la source
Understanding the genetic regulation of circulating protein levels can provide new insights into disease mechanisms. Here, we present the largest proteogenomic study to date (n = 78,664 participants across 38 studies), identifying >24,000 protein quantitative trait loci (QTLs) associated with 1,116 proteins, acting near to (n = 5,040) or distant (n = 19,698) from the cognate gene. Using machine learning-guided effector gene assignment, we provide genetic evidence for pathways, cell types, and tissues that modulate circulating protein levels, highlighting N-linked glycosylation as an important regulatory pathway. We demonstrate that genetic instruments of protein production/function ("cis") versus modulation ("trans") reveal distinct phenotypic insights. We identify proteins as candidates for drug targets and engagement (e.g., plasma furin and cardiovascular diseases) by comparing cis-based genetic evidence with protein-disease associations. Systematic triangulation of trans-protein QTLs (pQTLs) with genetic and protein associations across many diseases highlights potential drug repurposing opportunities, e.g., tyrosine kinase 2 (TYK2) inhibitors for rheumatoid arthritis. Our multi-cohort meta-analyses generate proteogenomic insights into disease mechanisms and new treatment opportunities.
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Contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Multi-cohort proteogenomic analyses reveal genetic effects across the proteome and diseasome
- Date Crossref
- 01/05/2026
- Éditeur
- Elsevier BV
- Type
- journal-article
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.
Sujets associés
Genetic Associations and EpidemiologyBioinformatics and Genomic NetworksAdvanced Proteomics Techniques and Applications