Structural variations (SVs) are important contributors to the genetics of human diseases. However, their role in Alzheimer's disease (AD) remains largely unstudied due to challenges in accurately detecting SVs. We analyzed whole-genome sequencing data from the Alzheimer's Disease Sequencing Project (N = 16,905) and identified 400,234 (168,223 high-quality) SVs. Laboratory validation yielded a sensitivity of 82% (85% for high-quality). We found a significant burden of deletions and duplications in AD cases, particularly for singletons and homozygous events. On AD genes, we observed the ultra-rare SVs associated with the disease, including protein-altering SVs in ABCA7, APP, PLCG2, and SORL1. Twenty-one SVs are in linkage disequilibrium (LD) with known AD-risk variants, exemplified by a 5k deletion in complete LD with rs143080277 in NCK2. We also identified 16 SVs associated with AD and 13 SVs linked to AD-related pathological/cognitive endophenotypes. This study highlights the pivotal role of SVs in shaping our understanding of AD genetics.
Structural Variation Detection and Association Analysis of Whole-Genome-Sequence Data from 16,905 Alzheimer's Diseases Sequencing Project Subjects.
对来自 16,905 例阿尔茨海默病测序项目受试者的全基因组序列数据进行结构变异检测和关联分析
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作者:Lee Wan-Ping, Wang Hui, Dombroski Beth, Cheng Po-Liang, Tucci Albert, Si Ya-Qin, Farrell John, Tzeng Jung-Ying, Leung Yuk Yee, Malamon John, Wang Li-San, Vardarajan Badri, Farrer Lindsay, Schellenberg Gerard
| 期刊: | Res Sq | 影响因子: | 0.000 |
| 时间: | 2023 | 起止号: | 2023 Oct 5 |
| doi: | 10.21203/rs.3.rs-3353179/v1 | 研究方向: | 其它 |
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