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Genome-wide mapping of human loci for essential hypertension.

机译:人类基因座全基因组范围内原发性高血压的定位。

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BACKGROUND: Blood pressure may contribute to 50% of the global cardiovascular disease epidemic. By understanding the genes predisposing to common disorders such as human essential hypertension we may gain insights into novel pathophysiological mechanisms and potential therapeutic targets. In the Medical Research Council BRItish Genetics of HyperTension (BRIGHT) study, we aim to identify these genetic factors by scanning the human genome for susceptibility genes for essential hypertension. We describe the results of a genome scan for hypertension in a large white European population. METHODS: We phenotyped 2010 affected sibling pairs drawn from 1599 severely hypertensive families, and completed a 10 centimorgan genome-wide scan. After rigorous quality control, we analysed the genotypic data by non-parametric linkage, which tests whether genes are shared in excess among the affected sibling pairs. Lod scores, calculated at regular points along each chromosome, were used to assess the support for linkage.FINDINGS: Linkage analysis identified a principle locus on chromosome 6q, with a lod score of 3.21 that attained genome-wide significance (p=0.042). The inclusion of three further loci with lod scores higher than 1.57 (2q, 5q, and 9q) also show genome-wide significance (p=0.017) when assessed under a locus-counting analysis. INTERPRETATION: These findings imply that human essential hypertension has an oligogenic element (a few genes may be involved in determination of the trait) possibly superimposed on more minor genetic effects, and that several genes may be tractable to a positional cloning strategy.
机译:背景:血压可能占全球心血管疾病流行的50%。通过了解易患人类原发性高血压等常见疾病的基因,我们可能会了解新的病理生理机制和潜在的治疗靶点。在医学研究理事会BRITISH高血压的遗传学(BRIGHT)研究中,我们旨在通过扫描人类基因组中原发性高血压的易感基因来识别这些遗传因素。我们描述了大量欧洲白人人群中高血压的基因组扫描结果。方法:我们对从1599个严重高血压家族中抽取的2010个患病同胞对进行了表型化,并完成了10 centimorgan全基因组扫描。经过严格的质量控制后,我们通过非参数链接分析了基因型数据,该基因数据测试了受影响的同胞对之间基因是否过量共享。在每个染色体的规则点上计算的Lod得分用于评估对连锁的支持。结果:连锁分析确定了6q染色体上的一个主要基因座,lod得分为3.21,达到了全基因组意义(p = 0.042)。当在基因座计数分析中评估时,lod得分高于1.57的另外三个基因座(2q,5q和9q)也显示出全基因组意义(p = 0.017)。解释:这些发现暗示人类原发性高血压具有寡聚元素(可能涉及几个基因来确定性状),可能叠加在更小的遗传效应上,并且几个基因对于位置克隆策略可能是易处理的。

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