陶氏病
突触
神经退行性变
树突棘
突触后电位
神经科学
生物
细胞生物学
受体
医学
病理
生物化学
疾病
海马结构
作者
Borislav Dejanovic,Melanie A. Huntley,Ann De Mazière,William J. Meilandt,Tiffany Wu,Karpagam Srinivasan,Zhiyu Jiang,Vineela Gandham,Brad A. Friedman,Hai Ngu,Oded Foreman,Richard A.D. Carano,Ben Chih,Judith Klumperman,Corey E. Bakalarski,Jesse E. Hanson,Morgan Sheng
出处
期刊:Neuron
[Elsevier]
日期:2018-12-01
卷期号:100 (6): 1322-1336.e7
被引量:343
标识
DOI:10.1016/j.neuron.2018.10.014
摘要
Synapse loss and Tau pathology are hallmarks of Alzheimer's disease (AD) and other tauopathies, but how Tau pathology causes synapse loss is unclear. We used unbiased proteomic analysis of postsynaptic densities (PSDs) in Tau-P301S transgenic mice to identify Tau-dependent alterations in synapses prior to overt neurodegeneration. Multiple proteins and pathways were altered in Tau-P301S PSDs, including depletion of a set of GTPase-regulatory proteins that leads to actin cytoskeletal defects and loss of dendritic spines. Furthermore, we found striking accumulation of complement C1q in the PSDs of Tau-P301S mice and AD patients. At synapses, C1q decorated perisynaptic membranes, accumulated in correlation with phospho-Tau, and was associated with augmented microglial engulfment of synapses and decline of synapse density. A C1q-blocking antibody inhibited microglial synapse removal in cultured neurons and in Tau-P301S mice, rescuing synapse density. Thus, inhibiting complement-mediated synapse removal by microglia could be a potential therapeutic target for Tau-associated neurodegeneration.
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