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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Moderate AMPA receptor clustering on the nanoscale can efficiently potentiate synaptic current
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Moderate AMPA receptor clustering on the nanoscale can efficiently potentiate synaptic current

机译:纳米级的中等AMPA受体簇可以有效增强突触电流

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摘要

The prevailing view at present is that postsynaptic expression of the classical NMDA receptor-dependent long-term potentiation relies on an increase in the numbers of local AMPA receptors (AMPARs). This is thought to parallel an expansion of postsynaptic cell specializations, for instance dendritic spine heads, which accommodate synaptic receptor proteins. However, glutamate released into the synaptic cleft can normally activate only a hotspot of low-affinityAMPARs that occur in the vicinity of the release site.Howthe enlargement of the AMPAR pool is causally related to the potentiated AMPAR current remains therefore poorly understood. To understand possible scenarios of postsynaptic potentiation, here we explore a detailed Monte Carlo model of the typical small excitatory synapse. Simulations suggest that approximately 50% increase in the synaptic AMPAR current could be provided by expanding the existing AMPAR pool at the expense of 100–200% new AMPARs added at the same packing density. Alternatively, reducing the inter-receptor distances by only 30–35% could achieve a similar level of current potentiation without any changes in the receptor numbers. TheNMDAreceptor current also appears sensitive to the NMDA receptor crowding. Our observations provide a quantitative framework for understanding the ‘resource-efficient’ ways to enact use-dependent changes in the architecture of central synapses.
机译:目前流行的观点是经典的NMDA受体依赖性长期增强作用的突触后表达依赖于局部AMPA受体(AMPAR)数量的增加。人们认为这与扩大突触后细胞的专业化(例如容纳突触受体蛋白的树突棘头部)平行。然而,释放到突触缝隙中的谷氨酸通常只能激活在释放位点附近发生的低亲和力AMPAR热点,因此AMPAR池的扩大与增强的AMPAR电流因果相关的原因仍然知之甚少。为了了解突触后增强的可能情况,在这里我们探索典型的小兴奋性突触的详细蒙特卡洛模型。仿真表明,通过以相同的堆积密度添加100–200%的新AMPAR来扩展现有的AMPAR库,可以使突触AMPAR电流增加约50%。另外,将受体间的距离仅减少30–35%即可获得相似的电流增强水平,而受体数量没有任何变化。 NMDA受体电流也似乎对NMDA受体拥挤敏感。我们的观察结果提供了一个定量的框架,用于理解“资源高效”的方式来在中央突触的体系结构中进行依赖于使用的更改。

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