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1.
Am J Hum Genet ; 106(4): 535-548, 2020 04 02.
Article in English | MEDLINE | ID: mdl-32243820

ABSTRACT

The Million Veteran Program (MVP), initiated by the Department of Veterans Affairs (VA), aims to collect biosamples with consent from at least one million veterans. Presently, blood samples have been collected from over 800,000 enrolled participants. The size and diversity of the MVP cohort, as well as the availability of extensive VA electronic health records, make it a promising resource for precision medicine. MVP is conducting array-based genotyping to provide a genome-wide scan of the entire cohort, in parallel with whole-genome sequencing, methylation, and other 'omics assays. Here, we present the design and performance of the MVP 1.0 custom Axiom array, which was designed and developed as a single assay to be used across the multi-ethnic MVP cohort. A unified genetic quality-control analysis was developed and conducted on an initial tranche of 485,856 individuals, leading to a high-quality dataset of 459,777 unique individuals. 668,418 genetic markers passed quality control and showed high-quality genotypes not only on common variants but also on rare variants. We confirmed that, with non-European individuals making up nearly 30%, MVP's substantial ancestral diversity surpasses that of other large biobanks. We also demonstrated the quality of the MVP dataset by replicating established genetic associations with height in European Americans and African Americans ancestries. This current dataset has been made available to approved MVP researchers for genome-wide association studies and other downstream analyses. Further data releases will be available for analysis as recruitment at the VA continues and the cohort expands both in size and diversity.


Subject(s)
Ethnicity/genetics , Aged , Aged, 80 and over , Cohort Studies , Female , Genetic Markers/genetics , Genome-Wide Association Study/methods , Genotype , Humans , Male , Middle Aged , Polymorphism, Single Nucleotide/genetics , Precision Medicine/methods , Quality Control , Veterans , Whole Genome Sequencing/methods
2.
Hear Res ; 387: 107875, 2020 03 01.
Article in English | MEDLINE | ID: mdl-31896498

ABSTRACT

BACKGROUND: This study investigated the relationship between smoking and hearing loss and deafness (HLD) and whether the relationship is modified by genetic variation. Data for these analyses was from the subset of Japanese American families collected as part of the American Diabetes Association Genetics of Non-insulin Dependent Diabetes Mellitus study. Logistic regression with generalized estimating equations assessed the relationship between HLD and smoking. Nonparametric linkage analysis identified genetic regions harboring HLD susceptibility genes and ordered subset analysis was used to identify regions showing evidence for gene-smoking interactions. Genetic variants within these candidate regions were then each tested for interaction with smoking using logistic regression models. RESULTS: After adjusting for age, sex, diabetes status and smoking duration, for each pack of cigarettes smoked per day, risk of HLD increased 4.58 times (odds ratio (OR) = 4.58; 95% Confidence Interval (CI): (1.40,15.03)), and ever smokers were over 5 times more likely than nonsmokers to report HLD (OR = 5.22; 95% CI: (1.24, 22.03)). Suggestive evidence for linkage for HLD was observed in multiple genomic regions (Chromosomes 5p15, 8p23 and 17q21), and additional suggestive regions were identified when considering interactions with smoking status (Chromosomes 7p21, 11q23, 12q32, 15q26, and 20q13) and packs-per-day (Chromosome 8q21). CONCLUSIONS: To our knowledge this was the first report of possible gene-by-smoking interactions in HLD using family data. Additional work, including independent replication, is needed to understand the basis of these findings. HLD are important public health issues and understanding the contributions of genetic and environmental factors may inform public health messages and policies.


Subject(s)
Asian/genetics , Deafness/genetics , Gene-Environment Interaction , Hearing/genetics , Polymorphism, Single Nucleotide , Smoking/adverse effects , Adaptor Proteins, Signal Transducing/genetics , Adult , Aged , Cyclic Nucleotide Phosphodiesterases, Type 7/genetics , Deafness/ethnology , Deafness/physiopathology , Female , Genetic Predisposition to Disease , Genome-Wide Association Study , Humans , Japan/ethnology , Male , Membrane Proteins/genetics , Middle Aged , Phenotype , Prevalence , Repressor Proteins/genetics , Risk Assessment , Risk Factors , Smoking/ethnology , United States/epidemiology
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