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A genome-wide association scan for asthma in a general Australian population

机译:澳大利亚普通人群中哮喘的全基因组关联扫描

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摘要

To date, almost every chromosome has been implicated in genetic susceptibility to asthma to some degree. When compared with single nucleotide polymorphism, microsatellite markers exhibit high levels of heterozygosity and therefore provide higher statistical power in association. The objective of this study was to perform a genome-wide association study using 23,465 in-house microsatellite markers to detect asthma susceptibility regions in the Busselton population. In this study, three separate pooled DNA screenings yielded 18 markers with significantly different estimated frequencies in the three separate “case and control” pools: each pool consisting of 60 males and 60 females. These markers were evaluated by individual typing in 360 cases and 360 controls. Two markers showed significant differences between cases and controls (P = 0.001 and P = 0.003). Regions surrounding the two markers were subjected to high-density association mapping with a total of 14 additional markers. We were able to confirm and fine map the association in these two regions by typing 14 additional microsatellite markers (1805A09 (D18S0325i), P = 0.002; 1806D05 (D18S0181i), P = 0.001). Each region contains a predicted gene that showed strong associations with asthma. Further studies are underway to characterize the novel candidate asthma susceptibility genes identified in this genome-wide study.
机译:迄今为止,几乎每条染色体都在某种程度上与哮喘的遗传易感性有关。当与单核苷酸多态性相比时,微卫星标记物表现出高水平的杂合性,因此提供更高的关联统计能力。这项研究的目的是使用23,465个内部微卫星标记物进行全基因组关联研究,以检测Busselton人群的哮喘易感性区域。在这项研究中,三个独立的合并DNA筛选在三个独立的“病例和对照”库中产生了18个标记,其估计频率有明显不同:每个库由60位男性和60位女性组成。这些标记通过在360个案例和36​​0个对照中的个体输入进行评估。两种标记物在病例和对照组之间显示出显着差异(P = 0.001和P = 0.003)。对这两个标记周围的区域进行了高密度关联图谱分析,总共绘制了14个其他标记。通过键入14个其他微卫星标记(1805A09(D18S0325i),P = 0.002; 1806D05(D18S0181i),P = 0.001),我们能够确认并精细映射这两个区域的关联。每个区域都包含一个预测基因,该基因与哮喘有很强的联系。正在进行进一步的研究,以表征在这项全基因组研究中鉴定出的新型候选哮喘易感基因。

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  • 来源
    《Human Genetics》 |2008年第3期|297-306|共10页
  • 作者单位

    Western Australian Institute for Medical Research and UWA Centre for Medical Research B Block QEII Medical Centre The University of Western Australia Nedlands WA 6009 Australia;

    Department of Molecular Life Science Tokai University School of Medicine Bohseidai Isehara Kanagawa 259-1193 Japan;

    Western Australian Sleep Disorders Research Institute Sir Charles Gairdner Hospital Nedlands WA 6009 Australia;

    Western Australian Institute for Medical Research and UWA Centre for Medical Research B Block QEII Medical Centre The University of Western Australia Nedlands WA 6009 Australia;

    Department of Respiratory Medicine Sir Charles Gairdner Hospital Nedlands WA 6009 Australia;

    Clinical Biochemistry PathWest Laboratory Medicine Western Australia QEII Medical site Nedlands Australia School of Surgery and Pathology University of Western Australia Nedlands WA 6009 Australia;

    Department of Molecular Life Science Tokai University School of Medicine Bohseidai Isehara Kanagawa 259-1193 Japan;

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