兴奋性突触后电位
海马结构
神经科学
突触可塑性
海马体
突触
抑制性突触后电位
稳态可塑性
长时程增强
变质塑性
生物
受体
生物化学
作者
Joon-Hyuk Lee,J. S. Kim,Seulgi Noh,Hyoeun Lee,Se Young Lee,Ji Young Mun,Hyungju Park,Won‐Suk Chung
出处
期刊:Nature
[Springer Nature]
日期:2020-12-23
卷期号:590 (7847): 612-617
被引量:221
标识
DOI:10.1038/s41586-020-03060-3
摘要
In the adult hippocampus, synapses are constantly formed and eliminated1,2. However, the exact function of synapse elimination in the adult brain, and how it is regulated, are largely unknown. Here we show that astrocytic phagocytosis3 is important for maintaining proper hippocampal synaptic connectivity and plasticity. By using fluorescent phagocytosis reporters, we find that excitatory and inhibitory synapses are eliminated by glial phagocytosis in the CA1 region of the adult mouse hippocampus. Unexpectedly, we found that astrocytes have a major role in the neuronal activity-dependent elimination of excitatory synapses. Furthermore, mice in which astrocytes lack the phagocytic receptor MEGF10 show a reduction in the elimination of excitatory synapses; as a result, excessive but functionally impaired synapses accumulate. Finally, Megf10-knockout mice show defective long-term synaptic plasticity and impaired formation of hippocampal memories. Together, our data provide strong evidence that astrocytes eliminate unnecessary excitatory synaptic connections in the adult hippocampus through MEGF10, and that this astrocytic function is crucial for maintaining circuit connectivity and thereby supporting cognitive function.
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