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Multivariate Genome-wide Association Analysis of a Cytokine Network Reveals Variants with Widespread Immune, Haematological, and Cardiometabolic Pleiotropy.

Artika P Nath | Scott C Ritchie | Nastasiya F Grinberg | Howard Ho-Fung Tang | Qin Qin Huang | Shu Mei Teo | Ari V Ahola-Olli | Peter Würtz | Aki S Havulinna | Kristiina Santalahti | Niina Pitkänen | Terho Lehtimäki | Mika Kähönen | Leo-Pekka Lyytikäinen | Emma Raitoharju | Ilkka Seppälä | Antti-Pekka Sarin | Samuli Ripatti | Aarno Palotie | Markus Perola | Jorma S Viikari | Sirpa Jalkanen | Mikael Maksimow | Marko Salmi | Chris Wallace | Olli T Raitakari | Veikko Salomaa | Gad Abraham | Johannes Kettunen | Michael Inouye
American journal of human genetics | 2019

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.

Pubmed ID: 31679650

Research resources used in this publication

None found

Antibodies used in this publication

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Associated grants

  • Agency: Wellcome Trust, United Kingdom
    Id: WT107881
  • Agency: Medical Research Council, United Kingdom
    Id: MR/L003120/1
  • Agency: British Heart Foundation, United Kingdom
    Id: RG/13/13/30194
  • Agency: British Heart Foundation, United Kingdom
    Id: RG/18/13/33946
  • Agency: Wellcome Trust, United Kingdom
  • Agency: Medical Research Council, United Kingdom
    Id: MC_UU_00002/4

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This is a list of tools and resources that we have found mentioned in this publication.


GenABEL (tool)

RRID:SCR_001842

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on February 28,2023. R software library for genome-wide association analysis for quantitative, binary and time-till-event traits.

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METAL (tool)

RRID:SCR_002013

Software application designed to facilitate meta-analysis of large datasets (such as several whole genome scans) in a convenient, rapid and memory efficient manner. (entry from Genetic Analysis Software)

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OMIM (tool)

RRID:SCR_006437

Online catalog of human genes and genetic disorders, for clinical features, phenotypes and genes. Collection of human genes and genetic phenotypes, focusing on relationship between phenotype and genotype. Referenced overviews in OMIM contain information on all known mendelian disorders and variety of related genes. It is updated daily, and entries contain copious links to other genetics resources.

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ImmunoBase (tool)

RRID:SCR_014642

Web based resource focused on the genetics and genomics of immunologically related human diseases. Their mission is to provide a curated and integrated set of datasets and tools to support and promote research in this area. The current focus of the site is to integrate and curate summary case/control association statistics from the consortium of 12 diseases originally targeted by the ImmunoChip consortium.

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