TY - JOUR
T1 - Multi-cohort proteogenomic analyses reveal genetic effects across the proteome and diseasome
AU - Koprulu, Mine
AU - Smith-Byrne, Karl
AU - BeLOVE Study Group
AU - The Estonian Biobank Research Team
AU - SCALLOP Consortium
AU - Ferolito, Brian Richard
AU - Macdonald-Dunlop, Erin
AU - Luan, Jian’an
AU - Hedman, Åsa K.
AU - Ogamba, Chibuzor Franklin
AU - Kuliesius, Jurgis
AU - Repetto, Linda
AU - Ramisch, Anna
AU - Abbasi, Fahim
AU - Ärnlöv, Johan
AU - Assimes, Themistocles L.
AU - Björck, Hanna M.
AU - Björkander, Sophia
AU - Böttcher, Morten
AU - Butterworth, Adam Stuart
AU - Chen, Zhengming
AU - Cho, Kelly
AU - Clarke, Robert Joseph
AU - Cox, Simon Riddington
AU - Czene, Kamila
AU - Danesh, John
AU - Dedoussis, George
AU - Elmståhl, Sölve
AU - Eriksson, Niclas
AU - Eriksson, Per
AU - Esko, Tõnu
AU - Ferreiro-Iglesias, Aida
AU - Franks, Paul William
AU - Fu, Jingyuan
AU - Gaziano, J. Michael
AU - Ghanbari, Mohsen
AU - Gieger, Christian
AU - Gilly, Arthur
AU - Grallert, Harald
AU - Gunter, Marc James
AU - Gustafsson, Stefan
AU - Göteson, Andreas
AU - Hall, Per Frans Leonard
AU - Hansson, Oskar
AU - Harris, Sarah Elizabeth
AU - Hayward, Caroline
AU - Herder, Christian
AU - Hernandez-Pacheco, Natalia
AU - Hijazi, Ziad
AU - Hillary, Robert F.
AU - Vallerga, Costanza L.
AU - van Meurs, Joyce B.J.
AU - Zhao, Jing Hua
N1 - Publisher Copyright:
© 2026 The Author(s).
PY - 2026/5/28
Y1 - 2026/5/28
N2 - 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.
AB - 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.
UR - https://www.scopus.com/pages/publications/105038343001
U2 - 10.1016/j.cell.2026.03.049
DO - 10.1016/j.cell.2026.03.049
M3 - Article
C2 - 42097137
AN - SCOPUS:105038343001
SN - 0092-8674
VL - 189
SP - 3339-3357.e11
JO - Cell
JF - Cell
IS - 11
ER -