Genome-Wide Profiling of Blood Pressure in Adults and Children

Author:

Taal Hendrik R.1,Verwoert Germaine C.1,Demirkan Ayse1,Janssens A. Cecile J.W.1,Rice Kenneth1,Ehret Georg1,Smith Albert V.1,Verhaaren Ben F.J.1,Witteman Jacqueline C.M.1,Hofman Albert1,Vernooij Meike W.1,Uitterlinden Andre G.1,Rivadeneira Fernando1,Ikram M. Arfan1,Levy Daniel1,van der Heijden Albert J.1,Jaddoe Vincent W.V.1,van Duijn Cornelia M.1,

Affiliation:

1. From the Generation R Study Group (H.R.T., A.H., V.W.V.J.), Departments of Epidemiology (H.R.T., G.C.V., A.D., A.C.J.W.J., B.F.J.V., J.C.M.W., A.H., M.W.V., A.G.U., F.R., M.A.I., V.W.V.J., C.M.v.D.), Paediatrics (H.R.T, A.J.v.d.H., V.W.V.J.), Internal Medicine (G.C.V., A.G.U., F.R.), and Radiology (B.F.J.V., M.W.V., M.A.I.), Erasmus MC, Rotterdam, The Netherlands; Faculty of Medicine (A.V.S.), University of Iceland, Reykjavik, Iceland; Member of The Netherlands Centre for Healthy Aging (G.C.V., C.M...

Abstract

Hypertension is an important determinant of cardiovascular morbidity and mortality and has a substantial heritability, which is likely of polygenic origin. The aim of this study was to assess to what extent multiple common genetic variants contribute to blood pressure regulation in both adults and children and to assess overlap in variants between different age groups, using genome-wide profiling. Single nucleotide polymorphism sets were defined based on a meta-analysis of genome-wide association studies on systolic blood pressure and diastolic blood pressure performed by the Cohort for Heart and Aging Research in Genome Epidemiology (n=29 136), using different P value thresholds for selecting single nucleotide polymorphisms. Subsequently, genetic risk scores for systolic blood pressure and diastolic blood pressure were calculated in an independent adult population (n=2072) and a child population (n=1034). The explained variance of the genetic risk scores was evaluated using linear regression models, including sex, age, and body mass index. Genetic risk scores, including also many nongenome-wide significant single nucleotide polymorphisms, explained more of the variance than scores based only on very significant single nucleotide polymorphisms in adults and children. Genetic risk scores significantly explained ≤1.2% ( P =9.6*10 −8 ) of the variance in adult systolic blood pressure and 0.8% ( P =0.004) in children. For diastolic blood pressure, the variance explained was similar in adults and children (1.7% [ P =8.9*10 −10 ] and 1.4% [ P =3.3*10 −5 ], respectively). These findings suggest the presence of many genetic loci with small effects on blood pressure regulation both in adults and children, indicating also a (partly) common polygenic regulation of blood pressure throughout different periods of life.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Internal Medicine

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