生物
代谢组学
代谢组
全基因组关联研究
表型
免疫系统
遗传学
遗传关联
人类遗传学
计算生物学
基因组学
疾病
生物信息学
基因组
基因型
单核苷酸多态性
基因
医学
病理
作者
Xiaojing Chu,Martin Jaeger,Joep Beumer,Olivier B. Bakker,Raúl Aguirre‐Gamboa,Marije Oosting,Sanne P. Smeekens,Simone J.C.F.M. Moorlag,Vera P. Mourits,Valerie A. C. M. Koeken,Charlotte de Bree,Trees Jansen,Ian T. Mathews,Khoi Dao,Mahan Najhawan,Jeramie D. Watrous,Irma Joosten,Sonia Sharma,Hans J. P. M. Koenen,Sebo Withoff
标识
DOI:10.1186/s13059-021-02413-z
摘要
Abstract Background Recent studies highlight the role of metabolites in immune diseases, but it remains unknown how much of this effect is driven by genetic and non-genetic host factors. Result We systematically investigate circulating metabolites in a cohort of 500 healthy subjects (500FG) in whom immune function and activity are deeply measured and whose genetics are profiled. Our data reveal that several major metabolic pathways, including the alanine/glutamate pathway and the arachidonic acid pathway, have a strong impact on cytokine production in response to ex vivo stimulation. We also examine the genetic regulation of metabolites associated with immune phenotypes through genome-wide association analysis and identify 29 significant loci, including eight novel independent loci. Of these, one locus (rs174584-FADS2) associated with arachidonic acid metabolism is causally associated with Crohn’s disease, suggesting it is a potential therapeutic target. Conclusion This study provides a comprehensive map of the integration between the blood metabolome and immune phenotypes, reveals novel genetic factors that regulate blood metabolite concentrations, and proposes an integrative approach for identifying new disease treatment targets.
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