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A Revised View on the Role of Surface AMPAR Mobility in Tuning Synaptic Transmission: Limitations Tools and Alternative Views

机译:关于表面AMPAR移动性在调节突触传递中作用的修订视图:限制工具和替代视图

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摘要

Calcium dynamics in presynaptic terminals regulate the response dynamics of most central excitatory synapses. However, this dogma has been challenged by the hypothesis that mobility of the postsynaptic alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid subtype glutamate receptors (AMPAR) plays a role in tuning fast excitatory synaptic transmission. In this review, we reevaluate the factors regulating postsynaptic AMPAR mobility, reassess the modeling parameters, analyze the experimental tools, and end by providing alternative ideas stemming from recent results. In particular, newer methods of labeling AMPARs with small fluorophores in live neurons, combined with super-resolution microscopy and sub-second dynamics, lends support to the idea that AMPARs are primarily within the synapse, are greatly constrained, and have much slower mobility than previously thought. We discuss new experiments which may be necessary to readdress the role of postsynaptic AMPAR mobility in tuning fast excitatory synaptic transmission.
机译:突触前末端的钙动力学调节大多数中央兴奋性突触的反应动力学。但是,这种教条受到以下假设的挑战:突触后α-氨基-3-羟基-5-羟基-5-甲基-4-异恶唑丙酸亚型谷氨酸受体(AMPAR)的移动性在调节快速兴奋性突触传递中起作用。在这篇综述中,我们重新评估了调节突触后AMPAR流动性的因素,重新评估了建模参数,分析了实验工具,并最后根据最新结果提供了替代思路。特别是,较新的在活神经元中用小荧光团标记AMPAR的方法,结合超分辨率显微镜和亚秒级动力学,支持了AMPAR主要位于突触内,受到极大限制且移动性比慢得多的想法。以前认为。我们讨论新的实验,可能需要重新解决突触后AMPAR迁移在调整快速兴奋性突触传递中的作用。

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