| Literature DB >> 31679650 |
Artika P Nath1, Scott C Ritchie2, Nastasiya F Grinberg3, Howard Ho-Fung Tang4, Qin Qin Huang5, Shu Mei Teo2, Ari V Ahola-Olli6, Peter Würtz7, Aki S Havulinna8, Kristiina Santalahti9, Niina Pitkänen10, Terho Lehtimäki11, Mika Kähönen12, Leo-Pekka Lyytikäinen11, Emma Raitoharju11, Ilkka Seppälä11, Antti-Pekka Sarin8, Samuli Ripatti13, Aarno Palotie14, Markus Perola8, Jorma S Viikari15, Sirpa Jalkanen9, Mikael Maksimow9, Marko Salmi16, Chris Wallace17, Olli T Raitakari18, Veikko Salomaa9, Gad Abraham19, Johannes Kettunen20, Michael Inouye21.
Abstract
Cytokines are essential regulatory components of the immune system, and their aberrant levels have been linked to many disease states. Despite increasing evidence that cytokines operate in concert, many of the physiological interactions between cytokines, and the shared genetic architecture that underlies them, remain unknown. Here, we aimed to identify and characterize genetic variants with pleiotropic effects on cytokines. Using three population-based cohorts (n = 9,263), we performed multivariate genome-wide association studies (GWAS) for a correlation network of 11 circulating cytokines, then combined our results in meta-analysis. We identified a total of eight loci significantly associated with the cytokine network, of which two (PDGFRB and ABO) had not been detected previously. In addition, conditional analyses revealed a further four secondary signals at three known cytokine loci. Integration, through the use of Bayesian colocalization analysis, of publicly available GWAS summary statistics with the cytokine network associations revealed shared causal variants between the eight cytokine loci and other traits; in particular, cytokine network variants at the ABO, SERPINE2, and ZFPM2 loci showed pleiotropic effects on the production of immune-related proteins, on metabolic traits such as lipoprotein and lipid levels, on blood-cell-related traits such as platelet count, and on disease traits such as coronary artery disease and type 2 diabetes.Entities:
Keywords: GWAS; blood cell traits; cardiometabolic diseases; colocalisation analysis; cytokines; eQTLs; metabolites; multivariate analysis; protein QTLs
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Year: 2019 PMID: 31679650 PMCID: PMC6904835 DOI: 10.1016/j.ajhg.2019.10.001
Source DB: PubMed Journal: Am J Hum Genet ISSN: 0002-9297 Impact factor: 11.025