纹状体
神经科学
长时程增强
NMDA受体
突触可塑性
长期抑郁
中棘神经元
运动学习
神经可塑性
生物
腹侧纹状体
谷氨酸受体
心理学
受体
AMPA受体
多巴胺
生物化学
作者
Mai T. Dang,Fumiaki Yokoi,Henry H. Yin,David M. Lovinger,Yanyan Wang,Yuqing Li
标识
DOI:10.1073/pnas.0601758103
摘要
Much research has implicated the striatum in motor learning, but the underlying mechanisms have not been identified. Although NMDA receptor (NMDAR)-dependent long-term potentiation has been observed in the striatum, its involvement in motor learning remains unclear. To examine the role of striatal NMDAR in motor learning, we created striatum-specific NMDAR1 subunit knockout mice, analyzed the striatal anatomy and neuronal morphology of these mice, evaluated their performance on well established motor tasks, and performed electrophysiological recordings to assay striatal NMDAR function and long-term synaptic plasticity. Our results show that deleting the NMDAR1 subunit of the NMDAR specifically in the striatum, which virtually abolished NMDAR-mediated currents, resulted in only small changes in striatal neuronal morphology but severely impaired motor learning and disrupted dorsal striatal long-term potentiation and ventral striatal long-term depression.
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