Functional characterization of Alzheimer's disease genetic variants in microglia

阿尔茨海默病基因变异在小胶质细胞中的功能表征

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作者:Xiaoyu Yang ,Jia Wen ,Han Yang ,Ian R Jones ,Xiaodong Zhu ,Weifang Liu ,Bingkun Li ,Claire D Clelland ,Wenjie Luo ,Man Ying Wong ,Xingjie Ren ,Xiekui Cui ,Michael Song ,Hongjiang Liu ,Cady Chen ,Nicolas Eng ,Mirunalini Ravichandran ,Yang Sun ,David Lee ,Eric Van Buren ,Min-Zhi Jiang ,Candace S Y Chan ,Chun Jimmie Ye ,Rushika M Perera ,Li Gan ,Yun Li ,Yin Shen

Abstract

Candidate cis-regulatory elements (cCREs) in microglia demonstrate the most substantial enrichment for Alzheimer's disease (AD) heritability compared to other brain cell types. However, whether and how these genome-wide association studies (GWAS) variants contribute to AD remain elusive. Here we prioritize 308 previously unreported AD risk variants at 181 cCREs by integrating genetic information with microglia-specific 3D epigenome annotation. We further establish the link between functional variants and target genes by single-cell CRISPRi screening in microglia. In addition, we show that AD variants exhibit allelic imbalance on target gene expression. In particular, rs7922621 is the effective variant in controlling TSPAN14 expression among other nominated variants in the same cCRE and exerts multiple physiological effects including reduced cell surface ADAM10 and altered soluble TREM2 (sTREM2) shedding. Our work represents a systematic approach to prioritize and characterize AD-associated variants and provides a roadmap for advancing genetic association to experimentally validated cell-type-specific phenotypes and mechanisms.

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