Key result
Exome-wide analysis of 15,914 individuals of African ancestry identified rare coding variants in 10 genes associated with systolic and diastolic blood pressure variation.
Observational (n=15,914)
Yes
This large genetic study identified rare coding variants in 10 genes associated with blood pressure variation in individuals of African ancestry, providing potential new insights into hypertension mechanisms in a highly susceptible population.
Hypothesis-generating for ancestry-specific BP genetics; prospective validation required before clinical consideration.
OBJECTIVES: Hypertension is a major risk factor for all cardiovascular diseases, especially among African Americans. This study focuses on identifying specific blood pressure (BP) genes using 15 914 individuals of African ancestry from eight cohorts (Africa America Diabetes Mellitus, Atherosclerosis Risk in Communities Study, Coronary Artery Risk Development in young Adults, Genetics Network, Genetic Epidemiology Network of Arteriopathy, Howard University Family Study, Hypertension Genetic Epidemiology Network, and Loyola University Chicago Cohort) to further genetic findings in this population which has generally been underrepresented in BP studies. METHODS: We genotyped and performed various single variant and gene-based exome-wide analyses on 15 914 individuals on the Illumina HumanExome Beadchip v1.0 or v1.1 to test association with SBP and DBP long-term average residuals that were adjusted for age, age-squared, sex, and BMI. RESULTS: We identified rare variants affecting SBP and DBP in 10 genes: AFF1, GAPDHS, SLC28A3, COL6A1, CRYBA2, KRBA1, SEL1L3, YOD1, CCDC13, and QSOX1. Prior experimental evidence for six of these 10 candidate genes supports their involvement in cardiovascular mechanisms, corroborating their potential roles in BP regulation. CONCLUSION: Although our results require replication or validation due to their low numbers of carriers, and an ethnicity-specific genotyping array may be more informative, this study, which has identified several candidate genes in this population most susceptible to hypertension, presents one of the largest African-ancestry BP studies to date and the largest including analysis of rare variants.
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Nandakumar et al. (2017) conducted an observational in Blood pressure variation / Hypertension (n=15,914). Rare coding variants was evaluated on Association with SBP and DBP long-term average residuals. Exome-wide analysis of 15,914 individuals of African ancestry identified rare coding variants in 10 genes associated with systolic and diastolic blood pressure variation.
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