Back to Search Start Over

Whole-genome sequencing identifies EN1 as a determinant of bone density and fracture

Authors :
Daniel I. Chasman
Tamara B. Harris
Rui Li
Natasja M. van Schoor
Klaudia Walter
Charles R. Farber
Josée Dostie
Chia-Ho Cheng
Angela Xuereb-Anastasi
Katie Cremin
Denis Paquette
José A. Riancho
Joyce B. J. van Meurs
Yasin Memari
André G. Uitterlinden
Mila Jhamai
Stephen R. Williams
Douglas P. Kiel
Elin Grundberg
J L Min
Charles Kooperberg
Melina Claussnitzer
Nicole Soranzo
Pascal P. Arp
Shu Huang Chen
Emma L. Duncan
Melissa M. Formosa
Nicholas J. Timpson
Paul L. Auer
Liesbeth Vandenput
Gaurav Garg
Matthew A. Hibbs
Hou-Feng Zheng
Cynthia A. Loomis
Dominique Gauguier
Susan M. Ring
James Fraser
Daniel Grinberg
Bente L. Langdahl
Xavier Nogués
Paul Leo
Alberto Roselló-Díez
Wen-Chi Chou
Warren A. Cheung
Kyung-Hyun Park-Min
Joyce Y. Tung
John A. Eisman
John P. Kemp
Lauren E. Mokry
Beatrice Melin
David M. Evans
Ling Oei
François Rousseau
Lenore Launer
Joshua R. Lewis
Jens Erik Beck Jensen
Nerea Alonso
Christopher S. Carlson
Dan Mellström
Andrea Z. LaCroix
Olle Svensson
Yanhua Zhou
M. Carola Zillikens
Unnur Thorsteinsdottir
Vincenzo Forgetta
Chitra Lekha Dahia
Jeroen van Rooij
Paul M. Ridker
Adrian Sayers
Richard L. Prince
Beth Wilmot
Stephen Kaptoge
Carolina Medina-Gomez
David Karasik
Rebecca D. Jackson
Natalia Garcia-Giralt
David W. Rowe
Kay-Tee Khaw
Evangelia E. Ntzani
Li Hsu
Tuan V. Nguyen
Cornelia M. van Duijn
Jonathan Reeve
Petr Danecek
Celia M. T. Greenwood
Jeffrey Haessler
Ulrike Peters
Magnus Karlsson
David Goltzman
Nathalie van der Velde
George Davey-Smith
Tomi Pastinen
A.W. Enneman
Sylvie Giroux
Daniel S. Evans
Kari Stefansson
Katerina Trajanoska
Lynda M. Rose
Cheryl L. Ackert-Bicknell
Göran Hallmans
David A. Hinds
Kwangbom Choi
Albert V. Smith
Sophie Calderari
Mhairi Marshall
Kristin Siggeirsdottir
Xi Jiang
Matthew A. Brown
Jonathan H Tobias
Stuart H. Ralston
Johanne Bussiere
J. Brent Richards
Tim D. Spector
Najaf Amin
Celia L Gregson
Carrie M. Nielson
L. Adrienne Cupples
Yi-Hsiang Hsu
Albert Hofman
Gudmar Thorleifsson
Gregory J. Tranah
Ulrika Pettersson-Kymmer
José M. Olmos
Bing Ge
Claes Ohlsson
Matthew T. Maurano
Aaron Kleinman
Karol Estrada
Tony Kwan
Ching-Ti Liu
Fernando Rivadeneira
María T. Zarrabeitia
Franco Giulianini
Eric S. Orwoll
Alireza Moayyeri
Fiona E. McGuigan
Lisette C. P. G. M. de Groot
Shane A. McCarthy
Richard Durbin
Joel Eriksson
Carl Wibom
Charlotta Uggla
Robert Kraaij
Claus Christiansen
Soizik Berlivet
Jie Huang
Östen Ljunggren
Scott Wilson
Fjorda Koromani
Alexandra L. Joyner
Kristina Åkesson
Brooke Gardiner
Unnur Styrkarsdottir
V. Gudnason
A. Pernille Hermann
McGill University = Université McGill [Montréal, Canada]
Hebrew SeniorLife [Boston]
Department of Medicine
Harvard Medical School [Boston] (HMS)-Beth Israel Deaconess Medical Center [Boston] (BIDMC)
Harvard Medical School [Boston] (HMS)
Broad Institute of MIT and Harvard (BROAD INSTITUTE)
Harvard Medical School [Boston] (HMS)-Massachusetts Institute of Technology (MIT)-Massachusetts General Hospital [Boston]
Centre de Recherche des Cordeliers (CRC (UMR_S_1138 / U1138))
École pratique des hautes études (EPHE)
Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Université Paris Diderot - Paris 7 (UPD7)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Sorbonne Université (SU)
ProdInra, Migration
Epidemiology and Data Science
EMGO - Musculoskeletal health
APH - Amsterdam Public Health
AMS - Amsterdam Movement Sciences
Geriatrics
Erasmus MC other
Internal Medicine
Epidemiology
Pediatric Surgery
Universitat de Barcelona
Source :
Nature, Nature, Nature Publishing Group, 2015, 526 (7571), pp.112-117. ⟨10.1038/nature14878⟩, Nature, 526(7571), 112-117. Nature Publishing Group, Dipòsit Digital de la UB, Universidad de Barcelona, Recercat. Dipósit de la Recerca de Catalunya, instname, Zheng, H F, Forgetta, V, Hsu, Y H, Estrada, K, Rosello-Diez, A, Leo, P J, Dahia, C L, Park-Min, K H, Tobias, J H, Kooperberg, C, Kleinman, A, Styrkarsdottir, U, Liu, C T, Uggla, C, Evans, D S, Nielson, C M, Walter, K, Pettersson-Kymmer, U, McCarthy, S, Eriksson, J, Kwan, T, Jhamai, M, Trajanoska, K, Memari, Y, Min, J, Huang, J, Danecek, P, Wilmot, B, Li, R, Chou, W C, Mokry, L E, Moayyeri, A, Claussnitzer, M, Cheng, C H, Cheung, W, Medina-Gomez, C, Ge, B, Chen, S H, Choi, K, Oei, L, Fraser, J, Kraaij, R, Hibbs, M A, Gregson, C L, Paquette, D, Hofman, A, Wibom, C, Tranah, G J, Marshall, M, Gardiner, B B, Cremin, K, Auer, P, Hsu, L, Ring, S, Tung, J Y, Thorleifsson, G, Enneman, A W, van Schoor, N M, de Groot, L C P G, van der Velde, N, Melin, B, Kemp, J P, Christiansen, C, Sayers, A, Zhou, Y H, Calderari, S, van Rooij, J, Carlson, C, Peters, U, Berlivet, S, Dostie, J, Uitterlinden, A G, Williams, S R, Farber, C, Grinberg, D, LaCroix, A Z, Haessler, J, Chasman, D I, Giulianini, F, Rose, L M, Ridker, P M, Eisman, J A, Nguyen, T V, Center, J R, Nogues, X, Garcia-Giralt, N, Launer, L L, Gudnason, V, Mellstrom, D, Vandenput, L, Amin, N, van Duijn, C M, Karlsson, M K, Ljunggren, O, Svensson, O, Hallmans, G, Rousseau, F, Giroux, S, Bussiere, J, Rivadeneira, F F & Richards, J B 2015, ' Whole-genome sequencing identifies EN1 as a determinant of bone density and fracture ', Nature, vol. 526, no. 7571, pp. 112-117 . https://doi.org/10.1038/nature14878, Zheng, H-F, Forgetta, V, Hsu, Y-H, Estrada, K, Rosello-Diez, A, Leo, P J, Dahia, C L, Park-Min, K H, Tobias, J H, Kooperberg, C, Kleinman, A, Styrkarsdottir, U, Liu, C-T, Uggla, C, Evans, D S, Nielson, C M, Walter, K, Pettersson-Kymmer, U, McCarthy, S, Eriksson, J, Kwan, T, Jhamai, M, Trajanoska, K, Memari, Y, Min, J, Huang, J, Danecek, P, Wilmot, B, Li, R, Chou, W-C, Mokry, L E, Moayyeri, A, Claussnitzer, M, Cheng, C-H, Cheung, W, Medina-Gómez, C, Ge, B, Chen, S-H, Choi, K, Oei, L, Fraser, J, Kraaij, R, Hibbs, M A, Gregson, C L, Paquette, D, Hofman, A, Wibom, C, Tranah, G J, Marshall, M, Hermann, P & AOGC Consortium 2015, ' Whole-genome sequencing identifies EN1 as a determinant of bone density and fracture ', Nature, vol. 526, no. 7571, pp. 112-117 . https://doi.org/10.1038/nature14878, Zheng, H-F, Forgetta, V, Hsu, Y-H, Estrada, K, Rosello-Diez, A, Leo, P J, Dahia, C L, Park-Min, K H, Tobias, J H, Kooperberg, C, Kleinman, A, Styrkarsdottir, U, Liu, C-T, Uggla, C, Evans, D S, Nielson, C M, Walter, K, Pettersson-Kymmer, U, McCarthy, S, Eriksson, J, Kwan, T, Jhamai, M, Trajanoska, K, Memari, Y, Min, J, Huang, J, Danecek, P, Wilmot, B, Li, R, Chou, W-C, Mokry, L E, Moayyeri, A, Claussnitzer, M, Cheng, C-H, Cheung, W, Medina-Gómez, C, Ge, B, Chen, S-H, Choi, K, Oei, L, Fraser, J, Kraaij, R, Hibbs, M A, Gregson, C L, Paquette, D, Hofman, A, Wibom, C, Tranah, G J, Marshall, M, Langdahl, B L & AOGC Consortium 2015, ' Whole-genome sequencing identifies EN1 as a determinant of bone density and fracture ', Nature, vol. 526, no. 7571, pp. 112-7 . https://doi.org/10.1038/nature14878, Nature, 526(7571), 112-+. Nature Publishing Group, Nature 526 (2015), 2015, ' Whole-genome sequencing identifies EN1 as a determinant of bone density and fracture ', Nature . https://doi.org/10.1038/nature14878, Nature, 526, 112-117
Publication Year :
2015

Abstract

A full list of authors and affiliations appears on page 5 of this article.<br />The extent to which low-frequency (minor allele frequency (MAF) between 1-5%) and rare (MAF ≤ 1%) variants contribute to complex traits and disease in the general population is mainly unknown. Bone mineral density (BMD) is highly heritable, a major predictor of osteoporotic fractures, and has been previously associated with common genetic variants, as well as rare, population-specific, coding variants. Here we identify novel non-coding genetic variants with large effects on BMD (ntotal = 53,236) and fracture (ntotal = 508,253) in individuals of European ancestry from the general population. Associations for BMD were derived from whole-genome sequencing (n = 2,882 from UK10K (ref. 10); a population-based genome sequencing consortium), whole-exome sequencing (n = 3,549), deep imputation of genotyped samples using a combined UK10K/1000 Genomes reference panel (n = 26,534), and de novo replication genotyping (n = 20,271). We identified a low-frequency non-coding variant near a novel locus, EN1, with an effect size fourfold larger than the mean of previously reported common variants for lumbar spine BMD (rs11692564(T), MAF = 1.6%, replication effect size = +0.20 s.d., Pmeta = 2 × 10-14), which was also associated with a decreased risk of fracture (odds ratio = 0.85; P = 2 × 10-11; ncases = 98,742 and ncontrols = 409,511). Using an En1cre/flox mouse model, we observed that conditional loss of En1 results in low bone mass, probably as a consequence of high bone turnover. We also identified a novel low-frequency non-coding variant with large effects on BMD near WNT16 (rs148771817(T), MAF = 1.2%, replication effect size = +0.41 s.d., Pmeta = 1 × 10-11). In general, there was an excess of association signals arising from deleterious coding and conserved non-coding variants. These findings provide evidence that low-frequency non-coding variants have large effects on BMD and fracture, thereby providing rationale for whole-genome sequencing and improved imputation reference panels to study the genetic architecture of complex traits and disease in the general population.<br />peer-reviewed

Details

ISSN :
00280836, 14764687, and 14764679
Volume :
526
Issue :
7571
Database :
OpenAIRE
Journal :
Nature
Accession number :
edsair.doi.dedup.....289bd8ba01f498975690387b0ba536a9
Full Text :
https://doi.org/10.1038/nature14878