作者
Roman Kosoy, John F Fullard, Biao Zeng, Jaroslav Bendl, Pengfei Dong, Samir Rahman, Steven P Kleopoulos, Zhiping Shao, Kiran Girdhar, Jack Humphrey, Katia de Paiva Lopes, Alexander W Charney, Brian H Kopell, Towfique Raj, David Bennett, Christopher P Kellner, Vahram Haroutunian, Gabriel E Hoffman, Panos Roussos
发表日期
2022/8
期刊
Nature genetics
卷号
54
期号
8
页码范围
1145-1154
出版商
Nature Publishing Group US
简介
Microglia are brain myeloid cells that play a critical role in neuroimmunity and the etiology of Alzheimer’s disease (AD), yet our understanding of how the genetic regulatory landscape controls microglial function and contributes to AD is limited. Here, we performed transcriptome and chromatin accessibility profiling in primary human microglia from 150 donors to identify genetically driven variation and cell-specific enhancer–promoter (E-P) interactions. Integrative fine-mapping analysis identified putative regulatory mechanisms for 21 AD risk loci, of which 18 were refined to a single gene, including 3 new candidate risk genes (KCNN4, FIBP and LRRC25). Transcription factor regulatory networks captured AD risk variation and identified SPI1 as a key putative regulator of microglia expression and AD risk. This comprehensive resource capturing variation in the human microglia regulome provides insights into the …
引用总数
学术搜索中的文章