TY - JOUR
T1 - Rare Exome Sequence Variants in CLCN6 Reduce Blood Pressure Levels and Hypertension Risk
AU - Yu, Bing
AU - Pulit, Sara L.
AU - Hwang, Shih Jen
AU - Brody, Jennifer A.
AU - Amin, Najaf
AU - Auer, Paul L.
AU - Bis, Joshua C.
AU - Boerwinkle, Eric
AU - Burke, Gregory L.
AU - Chakravarti, Aravinda
AU - Correa, Adolfo
AU - Dreisbach, Albert W.
AU - Franco, Oscar H.
AU - Ehret, Georg B.
AU - Franceschini, Nora
AU - Hofman, Albert
AU - Lin, Dan Yu
AU - Metcalf, Ginger A.
AU - Musani, Solomon K.
AU - Muzny, Donna
AU - Palmas, Walter
AU - Raffel, Leslie
AU - Reiner, Alex
AU - Rice, Ken
AU - Rotter, Jerome I.
AU - Veeraraghavan, Narayanan
AU - Fox, Ervin
AU - Guo, Xiuqing
AU - North, Kari E.
AU - Gibbs, Richard A.
AU - Van Duijn, Cornelia M.
AU - Psaty, Bruce M.
AU - Levy, Daniel
AU - Newton-Cheh, Christopher
AU - Morrison, Alanna C.
N1 - Publisher Copyright:
© 2016 American Heart Association, Inc.
PY - 2016/2/1
Y1 - 2016/2/1
N2 - Background-Rare genetic variants influence blood pressure (BP). Methods and Results-Whole-exome sequencing was performed on DNA samples from 17 956 individuals of European ancestry and African ancestry (14 497, first-stage discovery and 3459, second-stage discovery) to examine the effect of rare variants on hypertension and 4 BP traits: systolic BP, diastolic BP, pulse pressure, and mean arterial pressure. Tests of ≈170 000 common variants (minor allele frequency, ≥1%; statistical significance, P≤2.9×10-7) and gene-based tests of rare variants (minor allele frequency, <1%; ≈17 000 genes; statistical significance, P≤1.5×10-6) were evaluated for each trait and ancestry, followed by multiethnic meta-analyses. In the first-stage discovery, rare coding variants (splicing, stop-gain, stop-loss, nonsynonymous variants, or indels) in CLCN6 were associated with lower diastolic BP (cumulative minor allele frequency, 1.3%; β=-3.20; P=4.1×10-6) and were independent of a nearby common variant (rs17367504) previously associated with BP. CLCN6 rare variants were also associated with lower systolic BP (β=-4.11; P=2.8×10-4), mean arterial pressure (β=-3.50; P=8.9×10-6), and reduced hypertension risk (odds ratio, 0.72; P=0.017). Meta-analysis of the 2-stage discovery samples showed that CLCN6 was associated with lower diastolic BP at exome-wide significance (cumulative minor allele frequency, 1.1%; β=-3.30; P=5.0×10-7). Conclusions-These findings implicate the effect of rare coding variants in CLCN6 in BP variation and offer new insights into BP regulation.
AB - Background-Rare genetic variants influence blood pressure (BP). Methods and Results-Whole-exome sequencing was performed on DNA samples from 17 956 individuals of European ancestry and African ancestry (14 497, first-stage discovery and 3459, second-stage discovery) to examine the effect of rare variants on hypertension and 4 BP traits: systolic BP, diastolic BP, pulse pressure, and mean arterial pressure. Tests of ≈170 000 common variants (minor allele frequency, ≥1%; statistical significance, P≤2.9×10-7) and gene-based tests of rare variants (minor allele frequency, <1%; ≈17 000 genes; statistical significance, P≤1.5×10-6) were evaluated for each trait and ancestry, followed by multiethnic meta-analyses. In the first-stage discovery, rare coding variants (splicing, stop-gain, stop-loss, nonsynonymous variants, or indels) in CLCN6 were associated with lower diastolic BP (cumulative minor allele frequency, 1.3%; β=-3.20; P=4.1×10-6) and were independent of a nearby common variant (rs17367504) previously associated with BP. CLCN6 rare variants were also associated with lower systolic BP (β=-4.11; P=2.8×10-4), mean arterial pressure (β=-3.50; P=8.9×10-6), and reduced hypertension risk (odds ratio, 0.72; P=0.017). Meta-analysis of the 2-stage discovery samples showed that CLCN6 was associated with lower diastolic BP at exome-wide significance (cumulative minor allele frequency, 1.1%; β=-3.30; P=5.0×10-7). Conclusions-These findings implicate the effect of rare coding variants in CLCN6 in BP variation and offer new insights into BP regulation.
KW - blood pressure
KW - exome
KW - genetic variation
KW - genome-wide association study
KW - hypertension
UR - https://www.scopus.com/pages/publications/84959482057
UR - https://www.scopus.com/pages/publications/84959482057#tab=citedBy
U2 - 10.1161/CIRCGENETICS.115.001215
DO - 10.1161/CIRCGENETICS.115.001215
M3 - Article
C2 - 26658788
AN - SCOPUS:84959482057
SN - 1942-325X
VL - 9
SP - 64
EP - 70
JO - Circulation: Cardiovascular Genetics
JF - Circulation: Cardiovascular Genetics
IS - 1
ER -