Atrial fibrillation (AF) is the most common arrhythmia. It is expected to affect 6-12 million Americans by 2050. AF is a major public health burden, associated with a 5-fold increased stroke risk, doubling in dementia risk, tripling in heart failur risk and nearly 2-fold increase in mortality. The estimated excess cost of health care due to AF is nearly $26 billion annually. AF is known to be heritable, and in recent years, 3 genetic loci fo AF have been identified through genome-wide association studies. More recently, we completed a large meta-analysis of genome-wide studies and identified 6 novel loci for AF. We will build upon our prior work using a multidisciplinary approach that integrates targeted sequencing of all 9 AF GWAS loci, robust replication in the CHARGE AF Consortium, and model system based functional analyses. We will take advantage of two well- characterized cohorts with early-onset AF from the Framingham Heart Study and Massachusetts General Hospital. Specifically, we propose to: 1) Identify potentially causative genetic variants at the 9 published GWAS loci by analyzing extant targeted sequencing data of the top 5 loci for AF generated by the NIH Resequencing and Genotyping Service in 480 individuals with early-onset AF and 480 referents and by performing new targeted sequencing of 4 additional AF loci in the same subjects. 2) Replicate the top 400 AF variants with MAF>0.5% identified in our targeted sequencing projects in 5,776 independent AF cases and 9,229 referents, and replicate the rare and singleton SNPs (MAF<0.5%) in the top 3 genetic regions in 1,000 independent individuals with early-onset AF and 1,000 referents. 3) Functionally evaluate the newly identified genetic variants for AF by using cellular electrophysiology to characterize coding variation in ion channel and using a combination of zebra fish, mice, and cell-based assays to examine non-coding variants at the two most promising AF related loci. Our translational approach will facilitate a greater understanding of the molecular basis of this common and morbid arrhythmia. Identification of causative variants may enhance risk stratification, and will provide preventive and therapeutic targets for drug discovery in the broader scientific and pharmaceutical community.
Despite affecting ~3 million Americans, relatively little is known about the underlying mechanisms that lead to atrial fibrillation (AF). The goal of this application is to perform sequencing of 9 genomic regions associated with AF in individuals with early-onset atrial fibrillation to find the causative genetic variants associated with this arrhythmia. Identifying the causal variants will lead to better risk stratification, improved treatment, and potentially prevention of AF.
Bapat, Aneesh; Anderson, Christopher D; Ellinor, Patrick T et al. (2018) Genomic basis of atrial fibrillation. Heart 104:201-206 |
Khera, Amit V; Chaffin, Mark; Aragam, Krishna G et al. (2018) Genome-wide polygenic scores for common diseases identify individuals with risk equivalent to monogenic mutations. Nat Genet 50:1219-1224 |
Weng, Lu-Chen; Preis, Sarah R; Hulme, Olivia L et al. (2018) Genetic Predisposition, Clinical Risk Factor Burden, and Lifetime Risk of Atrial Fibrillation. Circulation 137:1027-1038 |
Lin, Honghuang; van Setten, Jessica; Smith, Albert V et al. (2018) Common and Rare Coding Genetic Variation Underlying the Electrocardiographic PR Interval. Circ Genom Precis Med 11:e002037 |
Long, Michelle T; Benjamin, Emelia J (2018) Prevalent Cardiovascular Disease Events and T1 Mapping Defined Hepatic Fibrosis. Circ Cardiovasc Imaging 11:e007553 |
Turcot, Valérie (see original citation for additional authors) (2018) Protein-altering variants associated with body mass index implicate pathways that control energy intake and expenditure in obesity. Nat Genet 50:26-41 |
Nishtala, Arvind; Piers, Ryan J; Himali, Jayandra J et al. (2018) Atrial fibrillation and cognitive decline in the Framingham Heart Study. Heart Rhythm 15:166-172 |
Choi, Seung Hoan; Weng, Lu-Chen; Roselli, Carolina et al. (2018) Association Between Titin Loss-of-Function Variants and Early-Onset Atrial Fibrillation. JAMA 320:2354-2364 |
Ko, Darae; Preis, Sarah R; Lubitz, Steven A et al. (2018) Relation of Orthostatic Hypotension With New-Onset Atrial Fibrillation (From the Framingham Heart Study). Am J Cardiol 121:596-601 |
Khurshid, Shaan; Choi, Seung Hoan; Weng, Lu-Chen et al. (2018) Frequency of Cardiac Rhythm Abnormalities in a Half Million Adults. Circ Arrhythm Electrophysiol 11:e006273 |
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