학술논문

Whole-genome sequencing in diverse subjects identifies genetic correlates of leukocyte traits: The NHLBI TOPMed program
Document Type
article
Author
Mikhaylova, Anna VMcHugh, Caitlin PPolfus, Linda MRaffield, Laura MBoorgula, Meher PreethiBlackwell, Thomas WBrody, Jennifer ABroome, JaiChami, NathalieChen, Ming-HueiConomos, Matthew PCox, CoreyCurran, Joanne EDaya, MichelleEkunwe, LynetteGlahn, David CHeard-Costa, NancyHighland, Heather MHobbs, Brian DIlboudo, YannJain, DeeptiLange, Leslie AMiller-Fleming, Tyne WMin, NancyMoon, Jee-YoungPreuss, Michael HRosen, JonathonRyan, KathleenSmith, Albert VSun, QuanSurendran, Praveende Vries, Paul SWalter, KlaudiaWang, ZheWheeler, MarshaYanek, Lisa RZhong, XueAbecasis, Goncalo RAlmasy, LauraBarnes, Kathleen CBeaty, Terri HBecker, Lewis CBlangero, JohnBoerwinkle, EricButterworth, Adam SChavan, SameerCho, Michael HChoquet, HélèneCorrea, AdolfoCox, NancyDeMeo, Dawn LFaraday, NauderFornage, MyriamGerszten, Robert EHou, LifangJohnson, Andrew DJorgenson, EricKaplan, RobertKooperberg, CharlesKundu, KousikLaurie, Cecelia ALettre, GuillaumeLewis, Joshua PLi, BingshanLi, YunLloyd-Jones, Donald MLoos, Ruth JFManichaikul, AniMeyers, Deborah AMitchell, Braxton DMorrison, Alanna CNgo, DebbyNickerson, Deborah ANongmaithem, SurajNorth, Kari EO’Connell, Jeffrey ROrtega, Victor EPankratz, NathanPerry, James APsaty, Bruce MRich, Stephen SSoranzo, NicoleRotter, Jerome ISilverman, Edwin KSmith, Nicholas LTang, HuaTracy, Russell PThornton, Timothy AVasan, Ramachandran SZein, JoeMathias, Rasika AConsortium, NHLBI Trans-Omics for Precision MedicineReiner, Alexander PAuer, Paul L
Source
American Journal of Human Genetics. 108(10)
Subject
Human Genome
Genetics
Aetiology
2.1 Biological and endogenous factors
Inflammatory and immune system
Good Health and Well Being
Asthma
Biomarkers
Dermatitis
Atopic
Genetic Predisposition to Disease
Genome
Human
Genome-Wide Association Study
Humans
Leukocytes
National Heart
Lung
and Blood Institute (U.S.)
Phenotype
Polymorphism
Single Nucleotide
Prognosis
Proteome
Pulmonary Disease
Chronic Obstructive
Quantitative Trait Loci
United Kingdom
United States
Whole Genome Sequencing
NHLBI Trans-Omics for Precision Medicine (TOPMed) Consortium
blood-cell counts
whole-genome sequencing
Biological Sciences
Medical and Health Sciences
Genetics & Heredity
Language
Abstract
Many common and rare variants associated with hematologic traits have been discovered through imputation on large-scale reference panels. However, the majority of genome-wide association studies (GWASs) have been conducted in Europeans, and determining causal variants has proved challenging. We performed a GWAS of total leukocyte, neutrophil, lymphocyte, monocyte, eosinophil, and basophil counts generated from 109,563,748 variants in the autosomes and the X chromosome in the Trans-Omics for Precision Medicine (TOPMed) program, which included data from 61,802 individuals of diverse ancestry. We discovered and replicated 7 leukocyte trait associations, including (1) the association between a chromosome X, pseudo-autosomal region (PAR), noncoding variant located between cytokine receptor genes (CSF2RA and CLRF2) and lower eosinophil count; and (2) associations between single variants found predominantly among African Americans at the S1PR3 (9q22.1) and HBB (11p15.4) loci and monocyte and lymphocyte counts, respectively. We further provide evidence indicating that the newly discovered eosinophil-lowering chromosome X PAR variant might be associated with reduced susceptibility to common allergic diseases such as atopic dermatitis and asthma. Additionally, we found a burden of very rare FLT3 (13q12.2) variants associated with monocyte counts. Together, these results emphasize the utility of whole-genome sequencing in diverse samples in identifying associations missed by European-ancestry-driven GWASs.