小胶质细胞
突触
神经科学
CX3CR1型
星形胶质细胞
串扰
生物
CX3CL1型
细胞生物学
中枢神经系统
免疫系统
趋化因子
炎症
免疫学
物理
光学
趋化因子受体
作者
Travis E. Faust,Yi‐Han Lee,Ciara D. O’Connor,M BOYLE,Georgia Gunner,Ana Badimon,Pinar Ayata,Anne Schaefer,Dorothy P. Schafer
标识
DOI:10.1101/2024.02.08.579178
摘要
Astrocytes and microglia are emerging key regulators of activity-dependent synapse remodeling that engulf and remove synapses in response to changes in neural activity. Yet, the degree to which these cells communicate to coordinate this process remains an open question. Here, we use whisker removal in postnatal mice to induce activity-dependent synapse removal in the barrel cortex. We show that astrocytes do not engulf synapses in this paradigm. Instead, astrocytes reduce their contact with synapses prior to microglia-mediated synapse engulfment. We further show that reduced astrocyte-contact with synapses is dependent on microglial CX3CL1-CX3CR1 signaling and release of Wnts from microglia following whisker removal. These results demonstrate an activity-dependent mechanism by which microglia instruct astrocyte-synapse interactions, which then provides a permissive environment for microglia to remove synapses. We further show that this mechanism is critical to remodel synapses in a changing sensory environment and this signaling is upregulated in several disease contexts.
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