载脂蛋白E
神经病理学
神经科学
等位基因
生物
转录组
胶质增生
神经退行性变
疾病
特雷姆2
基因
载脂蛋白B
阿尔茨海默病
淀粉样蛋白(真菌学)
认知
认知功能衰退
遗传学
星形胶质增生
痴呆
基因表达
淀粉样前体蛋白
脂质体
早老素
基因剔除小鼠
基因敲除
前脑
医学
基因表达调控
作者
Lesley R. Golden,Dahlia Siano,Isaiah O. Stephens,Steven M. MacLean,Kai Saito,Georgia L. Nolt,Jessica L. Funnell,Akhil V. Pallerla,Sangderk Lee,Cathryn T Smith,Jing Chen,Haining Zhu,Clairity Voy,Callie M Whitus,Gabriela Hernandez,Brandon C. Farmer,Kumar Pandya,Dale O. Cowley,Shannon L. Macauley,Scott M. Gordon
标识
DOI:10.1038/s41593-025-02094-y
摘要
Compared to individuals carrying two copies of the ε4 allele of apolipoprotein E (APOE), ε2 homozygotes have an approximate 99% reduction in late-onset Alzheimer's disease (AD) risk. Here we develop a knock-in model that allows for an inducible 'switch' between risk and protective alleles (APOE4s2). Gene expression and proteomic analyses confirm that APOE4s2 mice synthesize E4 at baseline and E2 after tamoxifen administration. A whole-body allelic switch results in a metabolic profile resembling E2/E2 humans and drives AD-relevant alterations in the lipidome and single-cell transcriptome, particularly in astrocytes. Finally, when crossed to the 5xFAD background, astrocyte-specific E4 to E2 switching improves cognition, decreases amyloid pathology, lowers gliosis and reduces plaque-associated apolipoprotein E. Together, these data show that a short-term transition from APOE4 to APOE2 can broadly affect the cerebral transcriptome and lipidome, and that astrocyte-specific APOE replacement may be a viable strategy for future gene editing approaches to simultaneously reduce multiple AD-associated pathologies.
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