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用于大规模基因组关联研究的以心血管基因为中心的50k单核苷酸多态性阵列的概念、设计与实施。

Concept, design and implementation of a cardiovascular gene-centric 50 k SNP array for large-scale genomic association studies.

作者信息

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, Hansen Mark, Ajmal Saad, Papanicolaou George J, Guo Yiran, Li Mingyao, Derohannessian Stephanie, de Bakker Paul I W, 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, Price Alkes L, Munroe Patricia, Caulfield Mark, Drake Thomas, Boerwinkle Eric, Reich David, 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, Hirschhorn Joel N, Fitzgerald Garret A

机构信息

The Institute for Translational Medicine and Therapeutics, School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvannia, USA.

出版信息

PLoS One. 2008;3(10):e3583. doi: 10.1371/journal.pone.0003583. Epub 2008 Oct 31.

Abstract

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 approximately 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.

摘要

在过去十年中,人类心血管和代谢表型的大量遗传关联不断积累,尤其是来自近期全基因组关联研究(GWAS)的大量基因座。真正与复杂疾病相关的基因座通常作用较小,因此目前对它们的识别需要整合大型研究中的各种表型数据,以确保进行可靠的荟萃分析。我们设计了一种以基因为中心的50K单核苷酸多态性(SNP)芯片,以评估一系列心血管、代谢和炎症综合征中潜在的相关基因座。该芯片采用“世界性”标签方法,以捕获HapMap和SeattleSNPs项目所代表人群中约2000个基因座的遗传多样性。芯片内容参考了血管和炎症性疾病的GWAS、与动脉粥样硬化相关的表达数量性状基因座、基于通路的方法以及全面的文献检索。芯片平台的定制灵活性有助于根据基因优先排序策略,以不同的严格程度对基因座进行检测,该策略允许用比现有GWAS工具更高密度的标记饱和高优先级基因座,特别是在非洲HapMap样本中。我们还证明,IBC芯片可用于补充GWAS,增加所有主要HapMap人群中高优先级心血管疾病相关基因座的覆盖范围。超过200,000名经过广泛表型分析的个体的DNA将使用该芯片进行基因分型,所产生数据的很大一部分将发布到学术领域,以促进虚拟复制尝试、罕见变异分析以及不同人群中的跨队列荟萃分析。这些数据集还将有助于进行更可靠的二次分析,例如使用替代遗传模型、上位性和基因-环境相互作用进行探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c32/2571995/749305c90b79/pone.0003583.g001.jpg

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