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Role of motor cortex NMDA receptors in learning-dependent synaptic plasticity of behaving mice

机译:运动皮层NMDA受体在行为依赖小鼠学习依赖性突触可塑性中的作用

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摘要

The primary motor cortex has an important role in the precise execution of learned motor responses. During motor learning, synaptic efficacy between sensory and primary motor cortical neurons is enhanced, possibly involving long-term potentiation and N-methyl-D-aspartate (NMDA)-specific glutamate receptor function. To investigate whether NMDA receptor in the primary motor cortex can act as a coincidence detector for activity-dependent changes in synaptic strength and associative learning, here we generate mice with deletion of the Grin1 gene, encoding the essential NMDA receptor subunit 1 (GluN1), specifically in the primary motor cortex. The loss of NMDA receptor function impairs primary motor cortex long-term potentiation in vivo. Importantly, it impairs the synaptic efficacy between the primary somatosensory and primary motor cortices and significantly reduces classically conditioned eyeblink responses. Furthermore, compared with wild-type littermates, mice lacking primary motor cortex show slower learning in Skinner-box tasks. Thus, primary motor cortex NMDA receptors are necessary for activity-dependent synaptic strengthening and associative learning.
机译:初级运动皮层在精确执行学习到的运动反应中具有重要作用。在运动学习过程中,感觉和初级运动皮层神经元之间的突触功效增强,可能涉及长期增强作用和N-甲基-D-天冬氨酸(NMDA)特异性谷氨酸受体功能。为了研究初级运动皮层中的NMDA受体是否可以作为巧合检测器来检测突触强度和相关学习的活动依赖性变化,在这里我们产生了缺失Grin1基因的小鼠,该基因编码必需的NMDA受体亚基1(GluN1)特别是在初级运动皮层。 NMDA受体功能的丧失会损害初级运动皮层的体内长期增强作用。重要的是,它损害了初级体感和初级运动皮层之间的突触效力,并显着降低了传统条件下的眨眼反应。此外,与野生型同窝仔相比,缺少初级运动皮层的小鼠在Skinner-box任务中的学习速度较慢。因此,初级运动皮层NMDA受体对于活动依赖的突触强化和联想学习是必需的。

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