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Disentangling the genetics of lean mass

  • David Karasik
  • , M. Carola Zillikens
  • , Yi Hsiang Hsu
  • , Ali Aghdassi
  • , Kristina Akesson
  • , Najaf Amin
  • , Inês Barroso
  • , David A. Bennett
  • , Lars Bertram
  • , Murielle Bochud
  • , Ingrid B. Borecki
  • , Linda Broer
  • , Aron S. Buchman
  • , Liisa Byberg
  • , Harry Campbell
  • , Natalia Campos-Obando
  • , Jane A. Cauley
  • , Peggy M. Cawthon
  • , John C. Chambers
  • , Zhao Chen
  • Nam H. Cho, Hyung Jin Choi, Wen Chi Chou, Steven R. Cummings, Lisette C.P.G.M. De Groot, Phillip L. De Jager, Ilja Demuth, Luda Diatchenko, Michael J. Econs, Gudny Eiriksdottir, Anke W. Enneman, Joel Eriksson, Johan G. Eriksson, Karol Estrada, Daniel S. Evans, Mary F. Feitosa, Mao Fu, Christian Gieger, Harald Grallert, Vilmundur Gudnason, Launer J. Lenore, Caroline Hayward, Albert Hofman, Georg Homuth, Kim M. Huffman, Lise B. Husted, Thomas Illig, Erik Ingelsson, Till Ittermann, John Olov Jansson, Toby Johnson, Reiner Biffar, Joanne M. Jordan, Antti Jula, Magnus Karlsson, Kay Tee Khaw, Tuomas O. Kilpeläinen, Norman Klopp, Jacqueline S.L. Kloth, Daniel L. Koller, Jaspal S. Kooner, William E. Kraus, Stephen Kritchevsky, Zoltán Kutalik, Teemu Kuulasmaa, Johanna Kuusisto, Markku Laakso, Jari Lahti, Thomas Lang, Bente L. Langdahl, Markus M. Lerch, Joshua R. Lewis, Christina Lill, Lars Lind, Cecilia Lindgren, Yongmei Liu, Gregory Livshits, Östen Ljunggren, Ruth J.F. Loos, Mattias Lorentzon, Jian'An Luan, Robert N. Luben, Ida Malkin, Fiona E. McGuigan, Carolina Medina-Gomez, Thomas Meitinger, Håkan Melhus, Dan Mellström, Karl Michaëlsson, Braxton D. Mitchell, Andrew P. Morris, Leif Mosekilde, Maria Nethander, Anne B. Newman, Jeffery R. Oconnell, Ben A. Oostra, Eric S. Orwoll, Aarno Palotie, Munro Peacock, Markus Perola, Annette Peters, Richard L. Prince, Bruce M. Psaty, Katri Räikkönen, Stuart H. Ralston, Samuli Ripatti, Fernando Rivadeneira, John A. Robbins, Jerome I. Rotter, Igor Rudan, Veikko Salomaa, Suzanne Satterfield, Sabine Schipf, Chan Soo Shin, Albert V. Smith, Shad B. Smith, Nicole Soranzo, Timothy D. Spector, Alena StanÄ Áková, Kari Stefansson, Elisabeth Steinhagen-Thiessen, Lisette Stolk, Elizabeth A. Streeten, Unnur Styrkarsdottir, Karin M.A. Swart, Patricia Thompson, Cynthia A. Thomson, Gudmar Thorleifsson, Unnur Thorsteinsdottir, Emmi Tikkanen, Gregory J. Tranah, André G. Uitterlinden, Cornelia M. Van Duijn, Natasja M. Van Schoor, Liesbeth Vandenput, Peter Vollenweider, Henry Völzke, Jean Wactawski-Wende, Mark Walker, Nicholas J Wareham, Dawn Waterworth, Michael N. Weedon, H. Erich Wichmann, Elisabeth Widen, Frances M.K. Williams, James F. Wilson, Nicole C. Wright, Laura M. Yerges-Armstrong, Lei Yu, Weihua Zhang, Jing Hua Zhao, Yanhua Zhou, Carrie M. Nielson, Tamara B. Harris, Serkalem Demissie, Douglas P. Kiel, Claes Ohlsson
  • Harvard Medical School
  • Bar Ilan University
  • Erasmus University Medical Center
  • Netherlands Consortium for Healthy Aging Sponsored by Netherlands Genomics Initiative
  • Harvard T.H. Chan School of Public Health
  • Ernst-Moritz-Arndt Universität Greifswald
  • University Hospital Malmö
  • Lunds University Hospital
  • Wellcome Trust
  • NIHR Cambridge Biomedical Research Centre
  • University of Cambridge
  • Rush University Medical Center
  • University of Lübeck
  • Centre Hospitalier Universitaire Vaudois (CHUV)
  • Washington University School of Medicine in St. Louis
  • Uppsala University
  • The University of Edinburgh Medical School
  • University of Pittsburgh
  • California Pacific Medical Center
  • Ealing Hospital NHS Trust
  • Imperial College London
  • Imperial College Healthcare NHS Trust
  • and Royal Brompton and Harefield NHS Trust
  • University of Arizona
  • Ajou University School of Medicine
  • Seoul National University College of Medicine
  • Seoul National University
  • The Broad Institute of MIT and Harvard
  • Wageningen University and Research Centre
  • Columbia University Irving Medical Center
  • Charité – Universitätsmedizin Berlin
  • Charite Universitätsmedizin Berlin
  • University of North Carolina at Chapel Hill
  • McGill University
  • Indiana University School of Medicine
  • Icelandic Heart Association
  • Göteborgs Universitet
  • National Institute for Health and Welfare
  • University of Helsinki
  • Helsinki University Central Hospital
  • Folkhälsan
  • Neurology Research
  • Department of Genetics
  • University of Maryland School of Medicine
  • Research Unit of Molecular Epidemiology
  • Institute of Epidemiology II
  • Helmholtz Zentrum München German Research Center for Environmental Health
  • German Centre for Diabetes Research (DZD)
  • University of Iceland
  • National Institute on Aging (NIA)
  • MRC Human Genetics Unit
  • Duke University
  • Aarhus University
  • Medizinische Hochschule Hannover
  • Stanford University School of Medicine
  • University of Lausanne
  • Swiss Institute of Bioinformatics
  • University of North Carolina
  • University of Cambridge School of Clinical Medicine
  • Novo Nordisk Foundation Center for Basic Metabolic Research
  • Mount Sinai School of Medicine
  • National Heart and Lung Institute
  • Wake Forest School of Medicine
  • University of Kuopio
  • University of California San Francisco
  • The University of Western Australia
  • University of Sydney
  • University of Oxford
  • Tel Aviv University
  • King's College London
  • Charles Bronfman Institute of Personalized Medicine
  • Institute of Child Health and Development
  • Veterans Administration Medical Center
  • University of Liverpool
  • University of Leiden
  • Oregon Health and Science University
  • University of Tartu
  • Sir Charles Gardiner Hospital
  • University of Washington School of Medicine
  • Kaiser Permanente
  • Western General Hospital
  • University of California, Davis
  • Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center
  • University of Tennessee Health Science Center
  • Department of Internal Medicine
  • deCODE genetics
  • Amsterdam University Medical Centers
  • SUNY
  • Centre Hospitalier Universitaire Vaudois
  • University at Buffalo, The State University of New York
  • The Medical School
  • GlaxoSmithKline, USA
  • University of Exeter Medical School
  • Ludwig-Maximilians-Universität München
  • Technical University of Munich
  • Uni-versity of Alabama at Birmingham
  • Boston University School of Public Health

Research output: Contribution to journalArticlepeer-review

41 Scopus citations

Abstract

Background Lean body mass (LM) plays an important role in mobility and metabolic function. We previously identified five loci associated with LM adjusted for fat mass in kilograms. Such an adjustment may reduce the power to identify genetic signals having an association with both lean mass and fat mass. Objectives To determine the impact of different fat mass adjustments on genetic architecture of LM and identify additional LM loci. Methods We performed genome-wide association analyses for whole-body LM (20 cohorts of European ancestry with n = 38,292) measured using dual-energy X-ray absorptiometry) or bioelectrical impedance analysis, adjusted for sex, age, age 2, and height with or without fat mass adjustments (Model 1 no fat adjustment; Model 2 adjustment for fat mass as a percentage of body mass; Model 3 adjustment for fat mass in kilograms). Results Seven single-nucleotide polymorphisms (SNPs) in separate loci, including one novel LM locus (TNRC6B), were successfully replicated in an additional 47,227 individuals from 29 cohorts. Based on the strengths of the associations in Model 1 vs Model 3, we divided the LM loci into those with an effect on both lean mass and fat mass in the same direction and refer to those as "sumo wrestler" loci (FTO and MC4R). In contrast, loci with an impact specifically on LM were termed "body builder" loci (VCAN and ADAMTSL3). Using existing available genome-wide association study databases, LM increasing alleles of SNPs in sumo wrestler loci were associated with an adverse metabolic profile, whereas LM increasing alleles of SNPs in "body builder" loci were associated with metabolic protection. Conclusions In conclusion, we identified one novel LM locus (TNRC6B). Our results suggest that a genetically determined increase in lean mass might exert either harmful or protective effects on metabolic traits, depending on its relation to fat mass.

Original languageEnglish
Pages (from-to)276-278
Number of pages3
JournalAmerican Journal of Clinical Nutrition
Volume109
Issue number2
DOIs
StatePublished - 1 Feb 2019

Keywords

  • body composition
  • body fat
  • meta-Analysis of genome-wide association studies
  • metabolic profile
  • skeletal muscle

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