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Whole genome sequence analysis of platelet traits in the NHLBI Trans-Omics for Precision Medicine (TOPMed) initiative

Authors :
Nauder Faraday
Brian D. Hobbs
Quan Sun
Michael Preuss
Ani Manichaikul
Eric Jorgenson
Ming-Huei Chen
Eric Boerwinkle
Florian Thibord
Arunoday Bhan
Alanna C. Morrison
Ramachandran S. Vasan
Nathan Pankratz
Charles Kooperberg
Deborah A. Nickerson
Joshua P. Lewis
Hélène Choquet
Jee-Young Moon
Jeffrey R. O'Connell
Marsha M. Wheeler
Albert V. Smith
Russell P. Tracy
Nathalie Chami
Ruth J. F. Loos
Alexander P. Reiner
Nicholas L. Smith
Gonçalo R. Abecasis
Laura M. Raffield
Amarise Little
Nancy L. Heard-Costa
Andrew D. Johnson
David C. Glahn
Rasika A. Mathias
Adam S. Butterworth
John Blangero
Joanne E. Curran
Timothy A. Thornton
Laura Almasy
Jerome I. Rotter
Nancy Min
Lisa R. Yanek
Donald M. Lloyd-Jones
Zhe Wang
Matthew P. Conomos
Myriam Fornage
Hua Tang
Lewis C. Becker
Lynette Ekunwe
Cecelia A. Laurie
Adolfo Correa
Jai G. Broome
Terri H. Beaty
Jennifer A. Brody
Caitlin P. McHugh
Yao Hu
Braxton D. Mitchell
Lifang Hou
Yun Li
Kathleen A. Ryan
Paul L. Auer
Stephen S. Rich
Kari E. North
Thomas W. Blackwell
Bruce M. Psaty
Deepti Jain
Paul S Vries
Praveen Surendran
Butterworth, Adam [0000-0002-6915-9015]
Apollo - University of Cambridge Repository
Source :
Human molecular genetics, vol 31, iss 3, Hum Mol Genet
Publication Year :
2021
Publisher :
Oxford University Press (OUP), 2021.

Abstract

Platelets play a key role in thrombosis and hemostasis. Platelet count (PLT) and mean platelet volume (MPV) are highly heritable quantitative traits, with hundreds of genetic signals previously identified, mostly in European ancestry populations. We here utilize whole genome sequencing (WGS) from NHLBI’s Trans-Omics for Precision Medicine initiative (TOPMed) in a large multi-ethnic sample to further explore common and rare variation contributing to PLT (n = 61 200) and MPV (n = 23 485). We identified and replicated secondary signals at MPL (rs532784633) and PECAM1 (rs73345162), both more common in African ancestry populations. We also observed rare variation in Mendelian platelet-related disorder genes influencing variation in platelet traits in TOPMed cohorts (not enriched for blood disorders). For example, association of GP9 with lower PLT and higher MPV was partly driven by a pathogenic Bernard-Soulier syndrome variant (rs5030764, p.Asn61Ser), and the signals at TUBB1 and CD36 were partly driven by loss of function variants not annotated as pathogenic in ClinVar (rs199948010 and rs571975065). However, residual signal remained for these gene-based signals after adjusting for lead variants, suggesting that additional variants in Mendelian genes with impacts in general population cohorts remain to be identified. Gene-based signals were also identified at several genome-wide association study identified loci for genes not annotated for Mendelian platelet disorders (PTPRH, TET2, CHEK2), with somatic variation driving the result at TET2. These results highlight the value of WGS in populations of diverse genetic ancestry to identify novel regulatory and coding signals, even for well-studied traits like platelet traits.

Details

ISSN :
14602083 and 09646906
Volume :
31
Database :
OpenAIRE
Journal :
Human Molecular Genetics
Accession number :
edsair.doi.dedup.....7fc9557e325812482460ef4586ad1a77
Full Text :
https://doi.org/10.1093/hmg/ddab252