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Benefits and Challenges of Rare Genetic Variation in Alzheimer's Disease

Overview
Specialty Genetics
Date 2024 Dec 9
PMID 39649954
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Abstract

Purpose Of Review: It is well established that sporadic Alzheimer's disease (AD) is polygenic with common and rare genetic variation alongside environmental factors contributing to disease. Here, we review our current understanding of the genetic architecture of disease, paying specific attention to rare susceptibility variants, and explore some of the limitations in rare variant detection and analysis.

Recent Findings: Rare variation has been shown to robustly associate with disease. These include potentially damaging and loss of function mutations that are easily modelled in silico, in vitro and in vivo, and represent potentially druggable targets. A number of risk genes, including , and show multiple independent associations suggesting that they may influence disease via multiple mechanisms. With transcriptional regulation, inflammatory response and modification of protein production suggested to be of primary importance.

Summary: We are at the beginning of our journey of rare variant detection in AD. Whole exome sequencing has been the predominant technology of choice. While fruitful, this has introduced a number of challenges with regard to data integration. Ultimately the future of disease-associated rare variant identification lies in whole genome sequencing projects that will allow the testing of the full range of genomic variation.

References
1.
Bis J, Jian X, Kunkle B, Chen Y, Hamilton-Nelson K, Bush W . Whole exome sequencing study identifies novel rare and common Alzheimer's-Associated variants involved in immune response and transcriptional regulation. Mol Psychiatry. 2018; 25(8):1859-1875. PMC: 6375806. DOI: 10.1038/s41380-018-0112-7. View

2.
Dardiotis E, Siokas V, Pantazi E, Dardioti M, Rikos D, Xiromerisiou G . A novel mutation in TREM2 gene causing Nasu-Hakola disease and review of the literature. Neurobiol Aging. 2017; 53:194.e13-194.e22. DOI: 10.1016/j.neurobiolaging.2017.01.015. View

3.
Cruchaga C, Karch C, Jin S, Benitez B, Cai Y, Guerreiro R . Rare coding variants in the phospholipase D3 gene confer risk for Alzheimer's disease. Nature. 2013; 505(7484):550-554. PMC: 4050701. DOI: 10.1038/nature12825. View

4.
Ho Y, Guan W, OConnell M, Basu S . Powerful association test combining rare variant and gene expression using family data from Genetic Analysis Workshop 19. BMC Proc. 2016; 10(Suppl 7):251-255. PMC: 5133497. DOI: 10.1186/s12919-016-0039-4. View

5.
Ho Y, Baechler E, Ortmann W, Behrens T, Graham R, Bhangale T . Using gene expression to improve the power of genome-wide association analysis. Hum Hered. 2014; 78(2):94-103. PMC: 4152945. DOI: 10.1159/000362837. View