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Size and Receptor Density of Glutamatergic Synapses: A Viewpoint from Left–Right Asymmetry of CA3–CA1 Connections

机译:谷氨酸能突触的大小和受体密度:从CA3–CA1连接的左右不对称性的观点

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摘要

Synaptic plasticity is considered to be the main mechanism for learning and memory. Excitatory synapses in the cerebral cortex and hippocampus undergo plastic changes during development and in response to electric stimulation. It is widely accepted that this process is mediated by insertion and elimination of various glutamate receptors. In a series of recent investigations on left–right asymmetry of hippocampal CA3–CA1 synapses, glutamate receptor subunits have been found to have distinctive expression patterns that depend on the postsynaptic density (PSD) area. Particularly notable are the GluR1 AMPA receptor subunit and NR2B NMDA receptor subunit, where receptor density has either a supralinear (GluR1 AMPA) or inverse (NR2B NMDAR) relationship to the PSD area. We review current understanding of structural and physiological synaptic plasticity and propose a scheme to classify receptor subtypes by their expression pattern with respect to PSD area.
机译:突触可塑性被认为是学习和记忆的主要机制。大脑皮层和海马中的兴奋性突触在发育过程中以及响应电刺激发生塑性变化。广泛接受该过程是通过插入和消除各种谷氨酸受体介导的。在最近一系列有关海马CA3–CA1突触左右不对称的研究中,发现谷氨酸受体亚基具有独特的表达模式,具体取决于突触后密度(PSD)区域。特别值得注意的是GluR1 AMPA受体亚基和NR2B NMDA受体亚基,其中受体密度与PSD区域呈超线性关系(GluR1 AMPA)或呈反线性关系(NR2B NMDAR)。我们审查了目前对结构和生理突触可塑性的理解,并提出了一种方案,通过相对于PSD区域的表达方式来对受体亚型进行分类。

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