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Genome-wide analysis of genetic predisposition to Alzheimer’s disease and related sex disparities

机译:全基因组分析阿尔茨海默氏病和相关性别差异的遗传易感性

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Alzheimer’s disease (AD) is the most common cause of dementia in the elderly and the sixth leading cause of death in the United States. AD is mainly considered a complex disorder with polygenic inheritance. Despite discovering many susceptibility loci, a major proportion of AD genetic variance remains to be explained. We investigated the genetic architecture of AD in four publicly available independent datasets through genome-wide association, transcriptome-wide association, and gene-based and pathway-based analyses. To explore differences in the genetic basis of AD between males and females, analyses were performed on three samples in each dataset: males and females combined, only males, or only females. Our genome-wide association analyses corroborated the associations of several previously detected AD loci and revealed novel significant associations of 35 single-nucleotide polymorphisms (SNPs) outside the chromosome 19q13 region at the suggestive significance level?of p ?5E–06. These SNPs were mapped to 21 genes in 19 chromosomal regions. Of these, 17 genes were not associated with AD at genome-wide or suggestive levels of associations by previous genome-wide association studies. Also, the chromosomal regions corresponding to 8 genes did not contain any previously detected AD-associated SNPs with p 5E–06. Our transcriptome-wide association and gene-based analyses revealed that 26 genes located in 20 chromosomal regions outside chromosome 19q13 had evidence of potential associations with AD at a false discovery rate of 0.05. Of these, 13 genes/regions did not contain any previously AD-associated SNPs at genome-wide or suggestive levels of associations. Most of the newly detected AD-associated SNPs and genes were sex specific, indicating sex disparities in the genetic basis of AD. Also, 7 of 26 pathways that showed evidence of associations with AD in our pathway-bases analyses were significant only in females. Our findings, particularly the newly discovered sex-specific genetic contributors, provide novel insight into the genetic architecture of AD and can advance our understanding of its pathogenesis.
机译:阿尔茨海默氏病(AD)是老年人痴呆症最常见的病因,也是美国第六大死亡原因。 AD主要被认为是具有多基因遗传的复杂疾病。尽管发现了许多易感基因座,但AD遗传变异的主要部分仍有待解释。我们通过全基因组范围内的关联,转录组范围内的关联以及基于基因和基于途径的分析,在四个可公开获得的独立数据集中研究了AD的遗传结构。为了探索男性和女性之间AD遗传基础的差异,对每个数据集中的三个样本进行了分析:男性和女性合计,仅男性或仅女性。我们的全基因组关联分析证实了几个先前检测到的AD基因座的关联,并揭示了19q13染色体外35个单核苷酸多态性(SNP)的新显着关联,其提示显着性水平为p <?5E-06。这些SNP被定位到19个染色体区域中的21个基因。在这些基因中,有17个基因在先前的全基因组关联研究中未在全基因组关联或暗示性关联水平上与AD关联。另外,对应于8个基因的染色体区域不包含任何先前检测到的p相关的P <5E-06的AD相关SNP。我们的转录组范围内的关联和基于基因的分析表明,位于19q13染色体外20个染色体区域中的26个基因具有与AD潜在关联的证据,错误发现率为0.05。在这些基因/区域中,有13个基因/区域在基因组范围内或暗示的关联水平上不包含任何先前与AD相关的SNP。新近发现的大多数与AD相关的SNP和基因都是性别特异性的,表明在AD遗传基础上存在性别差异。此外,在我们的路径基础分析中显示与AD相关的证据的26种路径中,有7条仅在女性中有意义。我们的发现,尤其是新近发现的性别特异性基因贡献者,为AD的遗传结构提供了新颖的见解,并可以增进我们对其AD发病机理的了解。

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