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Genetic variation associated with circulating monocyte count in the eMERGE Network

Authors :
Andrew Crenshaw
Gudny Eiriksdottir
Luigi Ferrucci
Kimberly F. Doheny
Albert V. Smith
M. Geoffrey Hayes
Aaron R. Folsom
Christopher S. Carlson
Vilmundur Gudnason
Nicole L. Glazer
Abel N. Kho
Tamara B. Harris
Timothy M. Frayling
Joshua C. Bis
Janine F. Felix
Daniel B. Mirel
David R. Crosslin
Eric Boerwinkle
Mike A. Nalls
Christopher J. O'Donnell
Josef Coresh
Qiong Yango
Santhi K. Ganesh
Aravinda Chakravarti
Cornelia M. van Duijn
Stefania Bandinelli
Frank J. A. van Rooij
Andrew McDavid
David Carrell
Andrew Singleton
Alexander P. Reiner
Marylyn D. Ritchie
Rongling Li
Melissa Garcia
Toshiko Tanaka
Xiuwen Zheng
Noah Weston
Eric B. Larson
Yongmei Liu
Dan L. Longo
Jacqueline C.M. Witteman
L. Adrienne Cupples
Iftikhar J. Kullo
Gail P. Jarvik
David Couper
Elizabeth W. Pugh
Mariza de Andrade
David Melzer
James G. Wilson
Catherine A. McCarty
Thomas Lumley
Alexander Saip
Ming-Huei Chen
Caroline S. Fox
Carlos J. Gallego
Abbas Dehghan
Dena G. Hernandez
Eugene Hart
Katherine M. Newton
Bruce M. Psaty
Paul K. Crane
Neil A. Zakai
Daniel Levy
Dana C. Crawford
Gastroenterology & Hepatology
Epidemiology
Source :
Human Molecular Genetics, 22(10), 2119-2127. Oxford University Press
Publication Year :
2013

Abstract

With white blood cell count emerging as an important risk factor for chronic inflammatory diseases, genetic associations of differential leukocyte types, specifically monocyte count, are providing novel candidate genes and pathways to further investigate. Circulating monocytes play a critical role in vascular diseases such as in the formation of atherosclerotic plaque. We performed a joint and ancestry-stratified genome-wide association analyses to identify variants specifically associated with monocyte count in 11 014 subjects in the electronic Medical Records and Genomics Network. In the joint and European ancestry samples, we identified novel associations in the chromosome 16 interferon regulatory factor 8 (IRF8) gene (P-value = 2.78×10(−16), β = −0.22). Other monocyte associations include novel missense variants in the chemokine-binding protein 2 (CCBP2) gene (P-value = 1.88×10(−7), β = 0.30) and a region of replication found in ribophorin I (RPN1) (P-value = 2.63×10(−16), β = −0.23) on chromosome 3. The CCBP2 and RPN1 region is located near GATA binding protein2 gene that has been previously shown to be associated with coronary heart disease. On chromosome 9, we found a novel association in the prostaglandin reductase 1 gene (P-value = 2.29×10(−7), β = 0.16), which is downstream from lysophosphatidic acid receptor 1. This region has previously been shown to be associated with monocyte count. We also replicated monocyte associations of genome-wide significance (P-value = 5.68×10(−17), β = −0.23) at the integrin, alpha 4 gene on chromosome 2. The novel IRF8 results and further replications provide supporting evidence of genetic regions associated with monocyte count.

Details

ISSN :
09646906
Database :
OpenAIRE
Journal :
Human Molecular Genetics, 22(10), 2119-2127. Oxford University Press
Accession number :
edsair.doi.dedup.....82c9bfe95968f1320921b9412a1aa37c