| Literature DB >> 27668658 |
Alexander P Reiner1,2, Paul L Auer3, Nicole Soranzo4,5,6, Valentina Iotchkova7,4, Jie Huang4,8, John A Morris9,10, Deepti Jain11, Caterina Barbieri4,12, Klaudia Walter4, Josine L Min13, Lu Chen4,5, William Astle14, Massimilian Cocca15,16, Patrick Deelen17,18, Heather Elding4, Aliki-Eleni Farmaki19, Christopher S Franklin4, Mattias Franberg20, Tom R Gaunt13, Albert Hofman21,22, Tao Jiang14, Marcus E Kleber23, Genevieve Lachance24, Jian'an Luan25, Giovanni Malerba26, Angela Matchan4, Daniel Mead4, Yasin Memari4, Ioanna Ntalla27,19, Kalliope Panoutsopoulou4, Raha Pazoki21, John R B Perry24,25, Fernando Rivadeneira21,28, Maria Sabater-Lleal20, Bengt Sennblad20, So-Youn Shin4,13, Lorraine Southam4,29, Michela Traglia12, Freerk van Dijk17,18, Elisabeth M van Leeuwen21, Gianluigi Zaza30, Weihua Zhang31, Najaf Amin21, Adam Butterworth14,6, John C Chambers31, George Dedoussis19, Abbas Dehghan21, Oscar H Franco21, Lude Franke18, Mattia Frontini32, Giovanni Gambaro33, Paolo Gasparini15,16,34, Anders Hamsten20, Aaron Issacs21, Jaspal S Kooner35, Charles Kooperberg2, Claudia Langenberg25, Winfried Marz36,37,38, Robert A Scott25, Morris A Swertz17,18,39, Daniela Toniolo12, Andre G Uitterlinden28, Cornelia M van Duijn21, Hugh Watkins40,29, Eleftheria Zeggini4, Mathew T Maurano41, Nicholas J Timpson13.
Abstract
Large-scale whole-genome sequence data sets offer novel opportunities to identify genetic variation underlying human traits. Here we apply genotype imputation based on whole-genome sequence data from the UK10K and 1000 Genomes Project into 35,981 study participants of European ancestry, followed by association analysis with 20 quantitative cardiometabolic and hematological traits. We describe 17 new associations, including 6 rare (minor allele frequency (MAF) < 1%) or low-frequency (1% < MAF < 5%) variants with platelet count (PLT), red blood cell indices (MCH and MCV) and HDL cholesterol. Applying fine-mapping analysis to 233 known and new loci associated with the 20 traits, we resolve the associations of 59 loci to credible sets of 20 or fewer variants and describe trait enrichments within regions of predicted regulatory function. These findings improve understanding of the allelic architecture of risk factors for cardiometabolic and hematological diseases and provide additional functional insights with the identification of potentially novel biological targets.Entities:
Mesh:
Year: 2016 PMID: 27668658 PMCID: PMC5279872 DOI: 10.1038/ng.3668
Source DB: PubMed Journal: Nat Genet ISSN: 1061-4036 Impact factor: 38.330