神经科学
生物
沉默期
神经油
神经行为学
句号(音乐)
星形胶质细胞
感觉系统
中枢神经系统
声学
刺激
物理
磁刺激
作者
Sarah D. Ackerman,Nelson A. Perez-Catalan,Marc Freeman,Chris Q. Doe
出处
期刊:Nature
[Nature Portfolio]
日期:2021-04-07
卷期号:592 (7854): 414-420
被引量:78
标识
DOI:10.1038/s41586-021-03441-2
摘要
Critical periods—brief intervals during which neural circuits can be modified by activity—are necessary for proper neural circuit assembly. Extended critical periods are associated with neurodevelopmental disorders; however, the mechanisms that ensure timely critical period closure remain poorly understood1,2. Here we define a critical period in a developing Drosophila motor circuit and identify astrocytes as essential for proper critical period termination. During the critical period, changes in activity regulate dendrite length, complexity and connectivity of motor neurons. Astrocytes invaded the neuropil just before critical period closure3, and astrocyte ablation prolonged the critical period. Finally, we used a genetic screen to identify astrocyte–motor neuron signalling pathways that close the critical period, including Neuroligin–Neurexin signalling. Reduced signalling destabilized dendritic microtubules, increased dendrite dynamicity and impaired locomotor behaviour, underscoring the importance of critical period closure. Previous work defined astroglia as regulators of plasticity at individual synapses4; we show here that astrocytes also regulate motor circuit critical period closure to ensure proper locomotor behaviour. The duration of a critical period of plasticity in the developing Drosophila motor circuit, during which motor neurons display activity-dependent refinement of neurite structure and connectivity, is dependent on astrocyte to motor neuron Neuroligin–Neurexin signalling.
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