神经科学
生长抑素
运动学习
生物
抑制性突触后电位
中间神经元
转录因子
初级运动皮层
运动皮层
基因
刺激
生物化学
作者
Jungwoo Yang,Pablo Serrano Balazote,Xuming Yin,Xiaochen Sun,Yingxi Lin,Simon X. Chen
出处
期刊:Neuron
[Elsevier]
日期:2022-09-12
卷期号:110 (20): 3339-3355.e8
被引量:16
标识
DOI:10.1016/j.neuron.2022.08.018
摘要
During motor learning, dendritic spines on pyramidal neurons (PNs) in the primary motor cortex (M1) undergo reorganization. Intriguingly, the inhibition from local somatostatin-expressing inhibitory neurons (SST-INs) plays an important role in regulating the PN plasticity and thus new motor skill acquisition. However, the molecular mechanisms underlying this process remain unclear. Here, we identified that the early-response transcription factor, NPAS4, is selectively expressed in SST-INs during motor learning. By utilizing in vivo two-photon imaging in mice, we found that cell-type-specific deletion of Npas4 in M1 disrupted learning-induced spine reorganization among PNs and impaired motor learning. In addition, NPAS4-expressing SST-INs exhibited lower neuronal activity during task-related movements, and chemogenetically increasing the activity of NPAS4-expressing ensembles was sufficient to mimic the effects of Npas4 deletion. Together, our results reveal an instructive role of NPAS4-expressing SST-INs in modulating the inhibition to downstream task-related PNs to allow proper spine reorganization that is critical for motor learning.
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