与阿尔茨海默病和其他常见的与年龄相关的临床和神经病理特征有关的结构变异。

IF 10.4 1区 生物学 Q1 GENETICS & HEREDITY
Ricardo A Vialle, Katia de Paiva Lopes, Yan Li, Bernard Ng, Julie A Schneider, Aron S Buchman, Yanling Wang, Jose M Farfel, Lisa L Barnes, Aliza P Wingo, Thomas S Wingo, Nicholas T Seyfried, Philip L De Jager, Chris Gaiteri, Shinya Tasaki, David A Bennett
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引用次数: 0

摘要

背景:阿尔茨海默病(AD)是一种复杂的神经退行性疾病,具有重要的遗传影响。虽然全基因组关联研究(GWAS)已经确定了许多迟发性AD (LOAD)的风险位点,但大多数这些关联的功能机制仍未解决。被称为结构变异(SVs)的大基因组重排,为阐明这些基因座内的机制提供了一条有希望的途径。方法:利用两项正在进行的衰老与痴呆队列研究——宗教秩序研究和Rush记忆与衰老项目(ROS/MAP)的数据,我们使用全基因组测序(WGS)数据对1088名参与者的20,205种常见SVs进行了全基因组关联分析。检查了一系列阿尔茨海默病和其他常见的与年龄相关的临床和神经病理特征。结果:首先,我们在81个AD风险位点上绘制了SVs图谱,发现22个SVs与GWAS导联变异存在连锁不平衡(LD),并与所测表型直接相关。最强的关联是TMEM106B基因3'UTR上的一个Alu元件的缺失,在高LD中与各自的AD GWAS位点相关,并与多种AD和AD相关疾病(ADRD)表型相关,包括缠结密度、TDP-43和认知弹性。该元件的缺失也与较低的TMEM106B蛋白丰度有关。我们还发现一个22 kb的缺失与ROS/MAP的抑郁相关,并且在IQCK位点具有与GWAS snp相似的关联模式。此外,我们利用我们的SV-GWAS目录来复制和表征基于sv的GWAS治疗AD和其他五种神经退行性疾病的独立发现。在这些发现中,我们强调了进展性核上性麻痹(PSP)的全基因组显著SVs的复制,包括17q21.31 MAPT位点反转和CYP2A13位点1483-bp缺失的标记,以及其他提示关联,如LMNTD1位点994-bp的重复,提示与AD相关,DOCK5位点3958-bp的缺失与路易体病(LBD)相关(P = 3.36 × 10-4)。结论:虽然样本量仍然有限,但本研究强调了包括SVs分析在阐明GWAS基因座机制方面的效用,并为表征SVs在神经退行性疾病发病机制中的作用提供了宝贵的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural variants linked to Alzheimer's disease and other common age-related clinical and neuropathologic traits.

Background: Alzheimer's disease (AD) is a complex neurodegenerative disorder with substantial genetic influence. While genome-wide association studies (GWAS) have identified numerous risk loci for late-onset AD (LOAD), the functional mechanisms underlying most of these associations remain unresolved. Large genomic rearrangements, known as structural variants (SVs), represent a promising avenue for elucidating such mechanisms within some of these loci.

Methods: By leveraging data from two ongoing cohort studies of aging and dementia, the Religious Orders Study and Rush Memory and Aging Project (ROS/MAP), we performed genome-wide association analysis testing 20,205 common SVs from 1088 participants with whole genome sequencing (WGS) data. A range of Alzheimer's disease and other common age-related clinical and neuropathologic traits were examined.

Results: First, we mapped SVs across 81 AD risk loci and discovered 22 SVs in linkage disequilibrium (LD) with GWAS lead variants and directly associated with the phenotypes tested. The strongest association was a deletion of an Alu element in the 3'UTR of the TMEM106B gene, in high LD with the respective AD GWAS locus and associated with multiple AD and AD-related disorders (ADRD) phenotypes, including tangles density, TDP-43, and cognitive resilience. The deletion of this element was also linked to lower TMEM106B protein abundance. We also found a 22-kb deletion associated with depression in ROS/MAP and bearing similar association patterns as GWAS SNPs at the IQCK locus. In addition, we leveraged our catalog of SV-GWAS to replicate and characterize independent findings in SV-based GWAS for AD and five other neurodegenerative diseases. Among these findings, we highlight the replication of genome-wide significant SVs for progressive supranuclear palsy (PSP), including markers for the 17q21.31 MAPT locus inversion and a 1483-bp deletion at the CYP2A13 locus, along with other suggestive associations, such as a 994-bp duplication in the LMNTD1 locus, suggestively linked to AD and a 3958-bp deletion at the DOCK5 locus linked to Lewy body disease (LBD) (P = 3.36 × 10-4).

Conclusions: While still limited in sample size, this study highlights the utility of including analysis of SVs for elucidating mechanisms underlying GWAS loci and provides a valuable resource for the characterization of the effects of SVs in neurodegenerative disease pathogenesis.

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来源期刊
Genome Medicine
Genome Medicine GENETICS & HEREDITY-
CiteScore
20.80
自引率
0.80%
发文量
128
审稿时长
6-12 weeks
期刊介绍: Genome Medicine is an open access journal that publishes outstanding research applying genetics, genomics, and multi-omics to understand, diagnose, and treat disease. Bridging basic science and clinical research, it covers areas such as cancer genomics, immuno-oncology, immunogenomics, infectious disease, microbiome, neurogenomics, systems medicine, clinical genomics, gene therapies, precision medicine, and clinical trials. The journal publishes original research, methods, software, and reviews to serve authors and promote broad interest and importance in the field.
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