重编程
表观遗传学
DNA甲基化
生物
染色质
小胶质细胞
海马结构
认知功能衰退
基因表达调控
海马体
基因组
神经科学
基因表达
后生
基因
遗传学
炎症
疾病
医学
痴呆
免疫学
病理
作者
Nathan R. Zemke,Seo Yeon Lee,Sainath Mamde,Bing Yang,Nicole Berchtold,B. Maximiliano Garduño,Hannah S. Indralingam,Weronika M. Bartosik,Pik Ki Lau,Keyi Dong,Emily Hsu,Amanda Yang,Yasmine Tani,Chumo Chen,Qiurui Zeng,Varun Ajith,Liqi Tong,Chanrung Seng,Daofeng Li,Ting Wang
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-07-23
卷期号:393 (6809): eadt8307-eadt8307
被引量:7
标识
DOI:10.1126/science.adt8307
摘要
Age-related cognitive decline is associated with altered physiology of the hippocampus. While changes in gene expression have been observed in aging brain, the regulatory mechanisms underlying these changes remain underexplored. We generated single-nucleus gene expression, chromatin accessibility, DNA methylation, and 3D genome data from 40 human hippocampal tissues spanning adult lifespan. We observed a striking loss of astrocytes, OPC, and endothelial cells during aging, including astrocytes that play a role in regulating synapses. Microglia undergo a dramatic switch from a homeostatic state to a primed inflammatory state through DNA methylome and 3D genome reprogramming. Aged cells experience erosion of their 3D genome architecture. Our study identifies age-associated changes in cell types/states and gene regulatory features that provide insight into cognitive decline during human aging.
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