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A genome-wide association study for late-onset Alzheimer's disease using DNA pooling

机译:使用DNA池进行全基因组关联研究,用于晚期阿尔茨海默氏病的发病

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Background Late-onset Alzheimer's disease (LOAD) is an age related neurodegenerative disease with a high prevalence that places major demands on healthcare resources in societies with increasingly aged populations. The only extensively replicable genetic risk factor for LOAD is the apolipoprotein E gene. In order to identify additional genetic risk loci we have conducted a genome-wide association (GWA) study in a large LOAD case – control sample, reducing costs through the use of DNA pooling. Methods DNA samples were collected from 1,082 individuals with LOAD and 1,239 control subjects. Age at onset ranged from 60 to 95 and Controls were matched for age (mean = 76.53 years, SD = 33), gender and ethnicity. Equimolar amounts of each DNA sample were added to either a case or control pool. The pools were genotyped using Illumina HumanHap300 and Illumina Sentrix HumanHap240S arrays testing 561,494 SNPs. 114 of our best hit SNPs from the pooling data were identified and then individually genotyped in the case – control sample used to construct the pools. Results Highly significant association with LOAD was observed at the APOE locus confirming the validity of the pooled genotyping approach. For 109 SNPs outside the APOE locus, we obtained uncorrected p-values ≤ 0.05 for 74 after individual genotyping. To further test these associations, we added control data from 1400 subjects from the 1958 Birth Cohort with the evidence for association increasing to 3.4 × 10-6 for our strongest finding, rs727153. rs727153 lies 13 kb from the start of transcription of lecithin retinol acyltransferase (phosphatidylcholine – retinol O-acyltransferase, LRAT ). Five of seven tag SNPs chosen to cover LRAT showed significant association with LOAD with a SNP in intron 2 of LRAT , showing greatest evidence of association (rs201825, p-value = 6.1 × 10-7). Conclusion We have validated the pooling method for GWA studies by both identifying the APOE locus and by observing a strong enrichment for significantly associated SNPs. We provide evidence for LRAT as a novel candidate gene for LOAD. LRAT plays a prominent role in the Vitamin A cascade, a system that has been previously implicated in LOAD.
机译:背景技术迟发性阿尔茨海默氏病(LOAD)是一种与年龄有关的神经退行性疾病,其发病率很高,这对人口老龄化的社会提出了对医疗资源的主要需求。 LOAD的唯一可广泛复制的遗传危险因素是载脂蛋白E基因。为了识别其他遗传风险基因座,我们在一个较大的LOAD病例–对照样品中进行了全基因组关联(GWA)研究,通过使用DNA池降低了成本。方法从1,082名LOAD个体和1,239名对照受试者中收集DNA样本。发病年龄在60-95岁之间,对照组的年龄(平均= 76.53岁,SD = 33),性别和种族相匹配。将等摩尔量的每种DNA样品添加到病例或对照池中。使用Illumina HumanHap300和Illumina Sentrix HumanHap240S阵列对这些库进行基因分型,测试561,494个SNP。从合并数据中识别出114个最佳匹配的SNP,然后分别进行基因分型-用于构建合并库的对照样本。结果在APOE位点观察到与LOAD的高度显着相关性,证实了联合基因分型方法的有效性。对于APOE基因座外的109个SNP,在进行个体基因分型后,我们获得了74个未校正p值≤0.05。为了进一步检验这些关联,我们添加了来自1958年出生队列的1400名受试者的控制数据,其中关联性增加到我们最强的发现rs727153的3.4×10 -6 的证据。 rs727153位于卵磷脂视黄醇酰基转移酶(磷脂酰胆碱–视黄醇O-酰基转移酶,LRAT)转录起始位置13 kb处。选择覆盖LRAT的七个标签SNP中的五个与LRAT内含子2中的SNP与LOAD显着相关,显示出最大的相关证据(rs201825,p值= 6.1×10 -7 )。结论我们已经通过鉴定APOE基因座和观察到明显相关SNP的强烈富集验证了GWA研究的合并方法。我们为LRAT作为LOAD的新候选基因提供证据。 LRAT在维生素A级联反应中起着重要作用,该系统以前与LOAD有关。

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