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Circadian Modulation of Neurons and Astrocytes Controls Synaptic Plasticity in Hippocampal Area CA1

机译:昼夜节日调节神经元和星形胶质细胞控制海马区域CA1中的突触可塑性

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Most animal species operate according to a 24-h period set by the suprachiasmatic nucleus (SCN) of the hypothalamus. The rhythmic activity of the SCN modulates hippocampal-dependent memory, but the molecular and cellular mechanisms that account for this effect remain largely unknown. Here, we identify cell-type-specific structural and functional changes that occur with circadian rhythmicity in neurons and astrocytes in hippocampal area CA1. Pyramidal neurons change the surface expression of NMDA receptors. Astrocytes change their proximity to synapses. Together, these phenomena alter glutamate clearance, receptor activation, and integration of temporally clustered excitatory synaptic inputs, ultimately shaping hippocampal-dependent learning in?vivo . We identify corticosterone as a key contributor to changes in synaptic strength. These findings highlight important mechanisms through which neurons and astrocytes modify the molecular composition and structure of the synaptic environment, contribute to the local storage of information in the hippocampus, and alter the temporal dynamics of cognitive processing.
机译:大多数动物物种根据下丘脑的Suprachiasmatic Nucleus(SCN)设定的24-H周期。 SCN的节奏活性调节海马依赖性记忆,但占这种效果的分子和细胞机制仍然很大程度上是未知的。在这里,我们鉴定了在海马区域CA1中神经元和星形胶质细胞中昼夜节律发生的细胞类型特异性结构和功能变化。金字塔神经元改变NMDA受体的表面表达。星形胶质细胞改变他们对突触的邻近。在一起,这些现象改变谷氨酸间隙,受体激活和临时聚类兴奋性突触投入的整合,最终塑造了依赖于海马依赖的学习。我们将皮质酮识别为突触强度变化的关键贡献者。这些发现突出了神经元和星形胶质细胞改变突触环境的分子组成和结构的重要机制,有助于海马信息的局部存储,并改变认知处理的时间动态。

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