There are several components of the research program. Component 1: Platelet Biology, Reactivity and Genomics. Utilizing one of the largest human samples (FHS: Framingham Heart Study) with platelet reactivity we have conducted deeper genetic scans for contributing genes. These scans use new genetic maps with deeper coverage of rare variation. DNA genotyping of an additional diverse population sample, the FHS OMNI cohort, was supported allowing additional validation samples and gene coverage for platelet reactivity traits. Further support was provided for genotyping of the U.K.-based Caerphilly Study in Men cohort, a rich study repository of hemostatic factor and platelet reactivity trait data. Targeted qPCR RNA measurements in FHS platelet samples are also completed and underway to investigate mechanistic questions for specific candidate genes. Separately, platelet RNA samples were collected from 32 myocardial infarction samples and whole transcriptome RNA sequencing supported to identify genes associated with different factors and diagnoses. Additional cell line and anonymous tissue samples were purchased to augment this work with future RNA sequencing. Component 2: Tissue-specific Gene Expression. A major cell- and tissue-specific database of genetic factors on gene expression (eQTLs) was maintained and updated. This catalog was used to add information on genes to many disease and risk factor studies, primarily in the cardiovascular and metabolic disease domains. In a separate project, gene expression measurements in whole blood samples from >5,300 FHS samples were employed in studies to identify genes whose RNA levels correlated with traits, including new eQTLs. A major study was undertaken to integrate FHS gene expression data with data on 15,000 other samples, leading to the identification and validation of >1,200 genes whose RNA levels change during aging. Research was supported to conduct experiments knocking out some of these novel genes in the worm C. elegans in order to assess whether they significantly affect lifespan. Component 3: Development and Application of Bioinformatics Resources. Beyond the eQTL database mentioned above, a large genome-wide association study (GWAS) results database was updated, and an online NIH query site developed. This database of results has been expanded to 2,100 GWAS articles was used in research addressing multiple questions including the convergence of GWAS genetic evidence shared in common for cancer and cardiometabolic diseases;convergence of GWAS disease traits on drug targeted genes, suggesting possible novel drug targets or therapeutic re-positionings;and a study on convergence of GWAS findings with tissue-specific eQTL findings. Ongoing updating of the database was supported.

Project Start
Project End
Budget Start
Budget End
Support Year
2
Fiscal Year
2014
Total Cost
Indirect Cost
Name
U.S. National Heart Lung and Blood Inst
Department
Type
DUNS #
City
State
Country
Zip Code
Ward-Caviness, Cavin K; Huffman, Jennifer E; Everett, Karl et al. (2018) DNA methylation age is associated with an altered hemostatic profile in a multiethnic meta-analysis. Blood 132:1842-1850
Floyd, J S; Sitlani, C M; Avery, C L et al. (2018) Large-scale pharmacogenomic study of sulfonylureas and the QT, JT and QRS intervals: CHARGE Pharmacogenomics Working Group. Pharmacogenomics J 18:127-135
Eicher, John D; Lettre, Guillaume; Johnson, Andrew D (2018) The genetics of platelet count and volume in humans. Platelets 29:125-130
Yao, Chen; Chen, George; Song, Ci et al. (2018) Genome-wide mapping of plasma protein QTLs identifies putatively causal genes and pathways for cardiovascular disease. Nat Commun 9:3268
Puurunen, Marja K; Hwang, Shih-Jen; Larson, Martin G et al. (2018) ADP Platelet Hyperreactivity Predicts Cardiovascular Disease in the FHS (Framingham Heart Study). J Am Heart Assoc 7:
van Rooij, Frank J A; Qayyum, Rehan; Smith, Albert V et al. (2017) Genome-wide Trans-ethnic Meta-analysis Identifies Seven Genetic Loci Influencing Erythrocyte Traits and a Role for RBPMS in Erythropoiesis. Am J Hum Genet 100:51-63
Joehanes, Roby; Zhang, Xiaoling; Huan, Tianxiao et al. (2017) Integrated genome-wide analysis of expression quantitative trait loci aids interpretation of genomic association studies. Genome Biol 18:16
Lotta, Luca A; Gulati, Pawan; Day, Felix R et al. (2017) Integrative genomic analysis implicates limited peripheral adipose storage capacity in the pathogenesis of human insulin resistance. Nat Genet 49:17-26
Sutphin, George L; Backer, Grant; Sheehan, Susan et al. (2017) Caenorhabditis elegans orthologs of human genes differentially expressed with age are enriched for determinants of longevity. Aging Cell 16:672-682
Webb, Thomas R; Erdmann, Jeanette; Stirrups, Kathleen E et al. (2017) Systematic Evaluation of Pleiotropy Identifies 6 Further Loci Associated With Coronary Artery Disease. J Am Coll Cardiol 69:823-836

Showing the most recent 10 out of 107 publications