Genome-wide analysis of polymorphism × sodium interaction effect on blood pressure identifies a novel 3′-BCL11B gene desert locus

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作者
Tsuyoshi Hachiya
Akira Narita
Hideki Ohmomo
Yoichi Sutoh
Shohei Komaki
Kozo Tanno
Mamoru Satoh
Kiyomi Sakata
Jiro Hitomi
Motoyuki Nakamura
Kuniaki Ogasawara
Masayuki Yamamoto
Makoto Sasaki
Atsushi Hozawa
Atsushi Shimizu
机构
[1] Iwate Medical University,Division of Biomedical Information Analysis, Iwate Tohoku Medical Megabank Organization, Disaster Reconstruction Center
[2] Tohoku University,Preventive Medicine and Epidemiology, Tohoku Medical Megabank Organization
[3] Iwate Medical University,Division of Clinical Research and Epidemiology, Iwate Tohoku Medical Megabank Organization, Disaster Reconstruction Center
[4] Iwate Medical University,Department of Hygiene and Preventive Medicine, School of Medicine
[5] Iwate Medical University,Division of Biomedical Information Analysis, Institute for Biomedical Sciences
[6] Iwate Medical University,Iwate Tohoku Medical Megabank Organization, Disaster Reconstruction Center
[7] Iwate Medical University,Department of Anatomy, School of Medicine
[8] Iwate Medical University,Department of Internal Medicine, School of Medicine
[9] Iwate Medical University,Department of Neurosurgery, School of Medicine
[10] Tohoku University,Integrative Genomics, Tohoku Medical Megabank Organization
[11] Iwate Medical University,Division of Ultrahigh Field MRI, Institute for Biomedical Sciences
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关键词
Sodal Interaction; Genome-wide Interaction Analysis; Replication Cohort; Sodium Consumption; Sentinel Variables;
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摘要
Excessive sodium intake is a global risk factor for hypertension. Sodium effects on blood pressure vary from person to person; hence, high-risk group targeting based on personal genetic information can play a complementary role to ongoing population preventive approaches to reduce sodium consumption. To identify genetic factors that modulate sodium effects on blood pressure, we conducted a population-based genome-wide interaction analysis in 8,768 Japanese subjects, which was >3 times larger than a similar previous study. We tested 7,135,436 polymorphisms in the discovery cohort, and loci that met suggestive significance were further examined in an independent replication cohort. We found that an interaction between a novel 3′-BCL11B gene desert locus and daily sodium consumption was significantly associated with systolic blood pressure in both discovery and replication cohorts under the recessive model. Further statistical analysis of rs8022678, the sentinel variant of the 3′-BCL11B gene desert locus, showed that differences in mean systolic blood pressure between high and low sodium consumption subgroups were 5.9 mm Hg (P = 8.8 × 10−12) in rs8022678 A carriers and −0.3 mm Hg (P = 0.27) in rs8022678 A non-carriers, suggesting that the rs8022678 genotype can classify persons into sodium-sensitive (A carriers) and sodium-insensitive (A non-carriers) subgroups. Our results implied that rs8022678 A carriers may receive a greater benefit from sodium-lowering interventions than non-carriers.
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