星形胶质增生
CDKN2A
淀粉样前体蛋白
阿尔茨海默病
生物
神经科学
细胞生物学
干细胞
BACE1-AS系列
表型
癌症研究
医学
疾病
病理
基因
遗传学
中枢神经系统
作者
Michael F. Clarke,Felicia Reinitz,Elizabeth H. Chen,Benedetta Nicolis di Robilant,Bayarsaikhan Chuluun,Jane Antony,Robert C. Jones,Neha Gubbi,Sai Saroja Kolluru,Dalong Qian,Katja Piltti,Michelle Monje,Aileen J. Anderson,H. Craig Heller,Stephen R. Quake
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2020-12-22
标识
DOI:10.1101/2020.12.21.383059
摘要
Alzheimers disease (AD) is a progressive neurodegenerative disease observed with aging that represents the most common form of dementia. To date, therapies targeting end-stage disease plaques, tangles, or inflammation have limited efficacy. Therefore, we set out to identify an earlier targetable phenotype. Utilizing a mouse model of AD and human fetal cells harboring mutant amyloid precursor protein, we show cell intrinsic neural precursor cell (NPC) dysfunction precedes widespread inflammation and amyloid plaque pathology, making it the earliest defect in the evolution of disease. We demonstrate that reversing impaired NPC self-renewal via genetic reduction of USP16, a histone modifier and critical physiological antagonist of the Polycomb Repressor Complex 1, can prevent downstream cognitive defects and decrease astrogliosis in vivo. Reduction of USP16 led to decreased expression of senescence gene Cdkn2a and mitigated aberrant regulation of the BMP pathway, a previously unknown function of USP16. Thus, we reveal USP16 as a novel target in an AD model that can both ameliorate the NPC defect and rescue memory and learning through its regulation of both Cdkn2a and BMP signaling.
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