Genome-wide characterization of circulating metabolic biomarkers

Minna K. Karjalainen(Oulu University of Applied Sciences), Savita Karthikeyan(University of Cambridge), Clare Oliver‐Williams(University of Cambridge), Eeva Sliz(University of Oulu), Elias Allara(University of Cambridge), Wing Tung Fung(University of Cambridge), Praveen Surendran(University of Cambridge), Weihua Zhang(Ealing Hospital), Pekka Jousilahti(Finnish Institute for Health and Welfare), Kati Kristiansson(Finnish Institute for Health and Welfare), Veikko Salomaa(Finnish Institute for Health and Welfare), Matt Goodwin(University of Bristol), David A. Hughes(University of Bristol), Michael Boehnke(University of Michigan), Lilian Fernandes Silva(University of Eastern Finland), Xianyong Yin(University of Michigan), Anubha Mahajan(Centre for Human Genetics), Matt J. Neville(University of Oxford), Natalie R. van Zuydam(Centre for Human Genetics), Renée de Mutsert(Leiden University Medical Center), Ruifang Li‐Gao(Leiden University Medical Center), Dennis O. Mook‐Kanamori(Leiden University Medical Center), Ayşe Demirkan(University of Surrey), Jun Liu(Erasmus MC), Raymond Noordam(Leiden University Medical Center), Stella Trompet(Leiden University Medical Center), Zhengming Chen(University of Oxford), Christiana Kartsonaki(University of Oxford), Liming Li(Peking University), Kuang Lin(University of Oxford), Fiona A. Hagenbeek(University of Helsinki), Jouke‐Jan Hottenga(Vrije Universiteit Amsterdam), René Pool(Vrije Universiteit Amsterdam), M. Arfan Ikram(Erasmus MC), Joyce B. J. van Meurs(Erasmus MC), Toomas Haller(University of Tartu), Yuri Milaneschi(Amsterdam Neuroscience), Mika Kähönen(Tampere University), Pashupati P. Mishra(Tampere University), Peter K. Joshi(Centre for Global Health Research), Erin Macdonald-Dunlop(Centre for Global Health Research), Massimo Mangino(King's College London), Jonas Zierer(King's College London), İlhan E. Acar(Radboud University Nijmegen), Carel B. Hoyng(Radboud University Nijmegen), Yara Lechanteur(Radboud University Nijmegen), Lude Franke(University Medical Center Groningen), Alexander Kurilshikov(University Medical Center Groningen), Alexandra Zhernakova(University Medical Center Groningen), Marian Beekman(Leiden University Medical Center), Erik B. van den Akker(Leiden University Medical Center), Ivana Kolčić(University of Split), Ozren Polašek(University of Split), Igor Rudan(Centre for Global Health Research), Christian Gieger(Helmholtz Zentrum München), Mélanie Waldenberger(Helmholtz Zentrum München), Folkert W. Asselbergs(Health Data Research UK), China Kadoorie Biobank Collaborative Group(Institute of Genetics and Cancer), FinnGen(University Medical Center Groningen), Caroline Hayward(Radboud University Nijmegen), Jingyuan Fu(University Medical Center Groningen), Anneke I. den Hollander(Radboud University Nijmegen), Cristina Menni(King's College London), Tim D. Spector(Tampere University), James F. Wilson(University of Turku), Terho Lehtimäki(Tampere University), Olli T. Raitakari(University of Turku), Brenda W.J.H. Penninx(University of Oxford), Tõnu Esko(Leiden University Medical Center), Robin Walters(University of Oxford), J. Wouter Jukema(Leiden University Medical Center), Naveed Sattar(Leiden University Medical Center), Mohsen Ghanbari(Erasmus MC), Ko Willems van Dijk(Centre for Human Genetics), Fredrik Karpe(University of Eastern Finland), Mark I. McCarthy(Centre for Human Genetics), Markku Laakso(University of Eastern Finland), Marjo‐Riitta Järvelin(University of Helsinki), Nicholas J. Timpson(Imperial College Healthcare NHS Trust), Markus Perola(University of Helsinki), Jaspal S. Kooner(Imperial College Healthcare NHS Trust), John C. Chambers(Imperial College Healthcare NHS Trust), Cornelia M. van Duijn(University of Oxford), P. Eline Slagboom(University of Cambridge), Dorret I. Boomsma(University of Eastern Finland), John Danesh(University of Cambridge), Mika Ala‐Korpela(University of Eastern Finland), Adam S. Butterworth(University of Cambridge), Johannes Kettunen(Finnish Institute for Health and Welfare)
Nature
March 6, 2024
Cited by 235Open Access
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Abstract

Abstract Genome-wide association analyses using high-throughput metabolomics platforms have led to novel insights into the biology of human metabolism 1–7 . This detailed knowledge of the genetic determinants of systemic metabolism has been pivotal for uncovering how genetic pathways influence biological mechanisms and complex diseases 8–11 . Here we present a genome-wide association study for 233 circulating metabolic traits quantified by nuclear magnetic resonance spectroscopy in up to 136,016 participants from 33 cohorts. We identify more than 400 independent loci and assign probable causal genes at two-thirds of these using manual curation of plausible biological candidates. We highlight the importance of sample and participant characteristics that can have significant effects on genetic associations. We use detailed metabolic profiling of lipoprotein- and lipid-associated variants to better characterize how known lipid loci and novel loci affect lipoprotein metabolism at a granular level. We demonstrate the translational utility of comprehensively phenotyped molecular data, characterizing the metabolic associations of intrahepatic cholestasis of pregnancy. Finally, we observe substantial genetic pleiotropy for multiple metabolic pathways and illustrate the importance of careful instrument selection in Mendelian randomization analysis, revealing a putative causal relationship between acetone and hypertension. Our publicly available results provide a foundational resource for the community to examine the role of metabolism across diverse diseases.


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