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de Bakker, Paul

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de Bakker

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Paul

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de Bakker, Paul

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Now showing 1 - 2 of 2
  • Publication

    Concept, Design and Implementation of a Cardiovascular Gene-centric 50 K SNP Array for Large-scale Genomic Association Studies

    (Public Library of Science, 2008) Keating, Brendan J.; Tischfield, Sam; Murray, Sarah S.; Bhangale, Tushar; Price, Thomas S.; Glessner, Joseph T.; Galver, Luana; Barrett, Jeffrey C.; Grant, Struan F. A.; Farlow, Deborah N.; Chandrupatla, Hareesh R.; Ajmal, Saad; Papanicolaou, George J.; Guo, Yiran; Li, Mingyao; DerOhannessian, Stephanie; Bailey, Swneke D.; Montpetit, Alexandre; Edmondson, Andrew C.; Taylor, Kent; Gai, Xiaowu; Wang, Susanna S.; Fornage, Myriam; Shaikh, Tamim; Groop, Leif; Boehnke, Michael; Hall, Alistair S.; Hattersley, Andrew T.; Frackelton, Edward; Patterson, Nick; Chiang, Charleston W. K.; Kim, Cecelia E.; Fabsitz, Richard R.; Ouwehand, Willem; Munroe, Patricia; Caulfield, Mark; Drake, Thomas; Boerwinkle, Eric; Whitehead, A. Stephen; Cappola, Thomas P.; Samani, Nilesh J.; Lusis, A. Jake; Schadt, Eric; Wilson, James G.; Koenig, Wolfgang; McCarthy, Mark I.; Kathiresan, Sekar; Gabriel, Stacey B.; Hakonarson, Hakon; Anand, Sonia S.; Reilly, Muredach; Engert, James C.; Nickerson, Deborah A.; Rader, Daniel J.; FitzGerald, Garret A.; Reitsma, Pieter H.; Hansen, Mark; de Bakker, Paul; Price, Alkes; Reich, David; Hirschhorn, Joel

    A wealth of genetic associations for cardiovascular and metabolic phenotypes in humans has been accumulating over the last decade, in particular a large number of loci derived from recent genome wide association studies (GWAS). True complex disease-associated loci often exert modest effects, so their delineation currently requires integration of diverse phenotypic data from large studies to ensure robust meta-analyses. We have designed a gene-centric 50 K single nucleotide polymorphism (SNP) array to assess potentially relevant loci across a range of cardiovascular, metabolic and inflammatory syndromes. The array utilizes a “cosmopolitan” tagging approach to capture the genetic diversity across ∼2,000 loci in populations represented in the HapMap and SeattleSNPs projects. The array content is informed by GWAS of vascular and inflammatory disease, expression quantitative trait loci implicated in atherosclerosis, pathway based approaches and comprehensive literature searching. The custom flexibility of the array platform facilitated interrogation of loci at differing stringencies, according to a gene prioritization strategy that allows saturation of high priority loci with a greater density of markers than the existing GWAS tools, particularly in African HapMap samples. We also demonstrate that the IBC array can be used to complement GWAS, increasing coverage in high priority CVD-related loci across all major HapMap populations. DNA from over 200,000 extensively phenotyped individuals will be genotyped with this array with a significant portion of the generated data being released into the academic domain facilitating in silico replication attempts, analyses of rare variants and cross-cohort meta-analyses in diverse populations. These datasets will also facilitate more robust secondary analyses, such as explorations with alternative genetic models, epistasis and gene-environment interactions.

  • Publication

    Common Genetic Variation Near the Phospholamban Gene Is Associated with Cardiac Repolarisation: Meta-Analysis of Three Genome-Wide Association Studies

    (Public Library of Science, 2009) Nolte, Ilja M.; Wallace, Chris; Newhouse, Stephen J.; Waggott, Daryl; Fu, Jingyuan; Soranzo, Nicole; Gwilliam, Rhian; Deloukas, Panos; Savelieva, Irina; Zheng, Dongling; Dalageorgou, Chrysoula; Farrall, Martin; Samani, Nilesh J.; Brown, Morris; Dominiczak, Anna; Lathrop, Mark; Zeggini, Eleftheria; Wain, Louise V.; Eijgelsheim, Mark; Pfeufer, Arne; Sanna, Serena; Arking, Dan E.; Asselbergs, Folkert W.; Spector, Tim D.; Carter, Nicholas D.; Jeffery, Steve; Tobin, Martin; Caulfield, Mark; Snieder, Harold; Munroe, Patricia B.; Jamshidi, Yalda; Connell, John; Newton-Cheh, Christopher; Rice, Ken; de Bakker, Paul; Paterson, Andrew D.

    To identify loci affecting the electrocardiographic QT interval, a measure of cardiac repolarisation associated with risk of ventricular arrhythmias and sudden cardiac death, we conducted a meta-analysis of three genome-wide association studies (GWAS) including 3,558 subjects from the TwinsUK and BRIGHT cohorts in the UK and the DCCT/EDIC cohort from North America. Five loci were significantly associated with QT interval at P<1×10(^{−6}). To validate these findings we performed an in silico comparison with data from two QT consortia: QTSCD (n = 15,842) and QTGEN (n = 13,685). Analysis confirmed the association between common variants near NOS1AP (P = 1.4×10(^{−83})) and the phospholamban (PLN) gene (P = 1.9×10(^{−29})). The most associated SNP near NOS1AP (rs12143842) explains 0.82% variance; the SNP near PLN (rs11153730) explains 0.74% variance of QT interval duration. We found no evidence for interaction between these two SNPs (P = 0.99). PLN is a key regulator of cardiac diastolic function and is involved in regulating intracellular calcium cycling, it has only recently been identified as a susceptibility locus for QT interval. These data offer further mechanistic insights into genetic influence on the QT interval which may predispose to life threatening arrhythmias and sudden cardiac death.