遗传建筑学
人口
生物
计算生物学
遗传学
编码(社会科学)
遗传变异
生物信息学
医学
疾病
建筑
利钠肽
基因组
鉴定(生物学)
家庭研究
遗传变异
基因检测
基因组学
全基因组关联研究
基于人群的研究
作者
Naman S. Shetty,Akhil Pampana,Mokshad Gaonkar,Amrita Nayak,Bal H,Nirav Y. Patel,Nehal Vekariya,J. Gustav Smith,Alanna C. Morrison,Bing Yu,Bruce M. Psaty,Eric Boerwinkle,James S. Floyd,Jerome I. Rotter,Kent D. Taylor,Leslie A. Lange,Marguerite R. Irvin,Mary Cushman,Stephen S. Rich,Ramachandran S. Vasan
出处
期刊:Circulation
[Wolters Kluwer]
日期:2026-01-28
卷期号:19 (1): e005130-e005130
标识
DOI:10.1161/circgen.124.005130
摘要
BACKGROUND: NPs (natriuretic peptides) are bioactive hormones crucial for regulating blood pressure, glucose homeostasis, and lipid metabolism. Despite the high heritability of circulating NP levels, the genetic determinants of NP regulation, particularly across ancestries and sexes, remain poorly understood. The objective of the current study was to identify genetic variants associated with NT-proBNP (N-terminal pro-B-type NP) levels in a multiancestry study population. METHODS: Whole genome sequencing and array-based data from 81 213 individuals without heart failure were analyzed from the Trans-Omics for Precision Medicine cohorts, UK Biobank, All of Us Research Program, and REGARDS (Reasons for Geographic and Racial Differences in Stroke) study to identify common, rare, and structural variants associated with NT-proBNP levels. The main outcome of the study was rank-based inverse normal and standardized NT-proBNP levels. Genetic associations with NT-proBNP were examined, followed by gene prioritization, transcriptome-wide association studies, colocalization, and rare variant analyses. RESULTS: (4q24) were identified through gene prioritization, with prior animal models supporting their therapeutic relevance. Rare variant analysis identified 6 masks with significant associations, specifically non-coding masks, suggesting regulatory modulation of NT-proBNP. CONCLUSIONS: This study identifies novel common, rare, and structural variants associated with NT-proBNP levels, highlighting the contribution of both coding and regulatory non-coding variation. These findings advance our understanding of the genetic architecture of NT-proBNP and may inform future cardiometabolic therapeutic strategies.
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