锡克
小胶质细胞
特雷姆2
生物
PI3K/AKT/mTOR通路
免疫学
癌症研究
神经科学
细胞生物学
信号转导
酪氨酸激酶
炎症
作者
Shoutang Wang,Raki Sudan,Vincent Peng,Yingyue Zhou,Siling Du,Carla M. Yuede,Tingting Lei,Jinchao Hou,Zhangying Cai,Marina Cella,Khai M. Nguyen,Pietro Luigi Poliani,Wandy L. Beatty,Yun Chen,Siyan Cao,Kent Lin,Cecília Pessoa Rodrigues,Ali H. Ellebedy,Susan Gilfillan,Gordon D. Brown,David M. Holtzman,Simone Brioschi,Marco Colonna
出处
期刊:Cell
[Elsevier]
日期:2022-10-01
卷期号:185 (22): 4153-4169.e19
被引量:153
标识
DOI:10.1016/j.cell.2022.09.033
摘要
Genetic studies have highlighted microglia as pivotal in orchestrating Alzheimer's disease (AD). Microglia that adhere to Aβ plaques acquire a transcriptional signature, "disease-associated microglia" (DAM), which largely emanates from the TREM2-DAP12 receptor complex that transmits intracellular signals through the protein tyrosine kinase SYK. The human TREM2R47H variant associated with high AD risk fails to activate microglia via SYK. We found that SYK-deficient microglia cannot encase Aβ plaques, accelerating brain pathology and behavioral deficits. SYK deficiency impaired the PI3K-AKT-GSK-3β-mTOR pathway, incapacitating anabolic support required for attaining the DAM profile. However, SYK-deficient microglia proliferated and advanced to an Apoe-expressing prodromal stage of DAM; this pathway relied on the adapter DAP10, which also binds TREM2. Thus, microglial responses to Aβ involve non-redundant SYK- and DAP10-pathways. Systemic administration of an antibody against CLEC7A, a receptor that directly activates SYK, rescued microglia activation in mice expressing the TREM2R47H allele, unveiling new options for AD immunotherapy.
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