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Excitation Control: Balancing PSD-95 Function at the Synapse

机译:励磁控制:突触处平衡PSD-95功能

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摘要

Excitability of individual neurons dictates the overall excitation in specific brain circuits. This process is thought to be regulated by molecules that regulate synapse number, morphology and strength. Neuronal excitation is also influenced by the amounts of neurotransmitter receptors and signaling molecules retained at particular synaptic sites. Recent studies revealed a key role for PSD-95, a scaffolding molecule enriched at glutamatergic synapses, in modulation of clustering of several neurotransmitter receptors, adhesion molecules, ion channels, cytoskeletal elements and signaling molecules at postsynaptic sites. In this review we will highlight mechanisms that control targeting of PSD-95 at the synapse, and discuss how this molecule influences the retention and clustering of diverse synaptic proteins to regulate synaptic structure and strength. We will also discuss how PSD-95 may maintain a balance between excitation and inhibition in the brain and how alterations in this balance may contribute to neuropsychiatric disorders.
机译:单个神经元的兴奋性决定了特定大脑回路的整体兴奋性。认为该过程受调节突触数量,形态和强度的分子调节。神经元兴奋还受到保留在特定突触位点的神经递质受体和信号分子的数量的影响。最近的研究表明,PSD-95(一种在谷氨酸能突触中富集的支架分子)在突触后位点的几种神经递质受体,粘附分子,离子通道,细胞骨架元素和信号分子的聚集调节中起着关键作用。在这篇综述中,我们将重点介绍在突触中控制PSD-95靶向的机制,并讨论该分子如何影响各种突触蛋白的保留和聚集,从而调节突触结构和强度。我们还将讨论PSD-95如何在大脑的兴奋和抑制之间保持平衡,以及这种平衡的改变如何导致神经精神疾病。

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