The axon initial segment-associated microglia regulate neuronal activity and visual perception

神经科学 兴奋性突触后电位 生物 小胶质细胞 刺激 钙显像 运动前神经元活动 去极化 轴突 人口 电生理学 抑制性突触后电位 视皮层 生物神经网络 光刺激 神经元 受体
作者
Yaping Wang,Qiushi Wang,Chen Gao,Shu He,Cheng Wei,Jia Song,Xinli Liu,Xiaoli Liu,Shi Feng,Wen Yao,Wen Wu,Tian-Ming Gao,Siqiang Ren
出处
期刊:Cell Research [Springer Nature]
标识
DOI:10.1038/s41422-026-01218-8
摘要

Abstract As innate immune cells in the brain, microglia directly contact excitatory neurons and regulate their activities under various conditions; however, the mechanisms of direct microglia–neuron functional interactions remain largely unknown. Here, we identified one special population of neocortical microglia that specifically associate with the axon initial segments (AISs) of excitatory neurons, and could regulate their activities and contribute to visual perception. We found that brief depolarization of AIS-associated microglia, but not the AIS-non-associated microglia, significantly promoted the action potential firing of related excitatory neurons, which relied mechanistically on microglial K + release through the outward K + channel THIK-1. Interestingly, in vivo visual stimulation with drifting gratings evoked microglial transient depolarizations specifically on the processes, which depended on muscarinic receptors and triggered K + release through THIK-1; meanwhile, visual stimulation induced more robust calcium responses in neurons associated with microglia at their AISs compared with nearby unassociated neurons. Disruption of the AIS–microglia interaction disturbed calcium responses specifically in neurons associated with microglia at their AISs, impaired the coordinated activity of the entire neural ensemble, and thereby affected the visual discrimination behavior of awake mice. Collectively, our findings identified a new type of microglia–neuron functional interaction that may be critical for higher-order brain functions.
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