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神经元活动对AMPA受体表面分布的塑造

The Shaping of AMPA Receptor Surface Distribution by Neuronal Activity.

作者信息

Chater Thomas Edward, Goda Yukiko

机构信息

Laboratory for Synaptic Plasticity and Connectivity, RIKEN Center for Brain Science, Wako-shi, Japan.

出版信息

Front Synaptic Neurosci. 2022 Mar 21;14:833782. doi: 10.3389/fnsyn.2022.833782. eCollection 2022.

Abstract

Neurotransmission is critically dependent on the number, position, and composition of receptor proteins on the postsynaptic neuron. Of these, α-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid receptors (AMPARs) are responsible for the majority of postsynaptic depolarization at excitatory mammalian synapses following glutamate release. AMPARs are continually trafficked to and from the cell surface, and once at the surface, AMPARs laterally diffuse in and out of synaptic domains. Moreover, the subcellular distribution of AMPARs is shaped by patterns of activity, as classically demonstrated by the synaptic insertion or removal of AMPARs following the induction of long-term potentiation (LTP) and long-term depression (LTD), respectively. Crucially, there are many subtleties in the regulation of AMPARs, and exactly how local and global synaptic activity drives the trafficking and retention of synaptic AMPARs of different subtypes continues to attract attention. Here we will review how activity can have differential effects on AMPAR distribution and trafficking along with its subunit composition and phosphorylation state, and we highlight some of the controversies and remaining questions. As the AMPAR field is extensive, to say the least, this review will focus primarily on cellular and molecular studies in the hippocampus. We apologise to authors whose work could not be cited directly owing to space limitations.

摘要

神经传递严重依赖于突触后神经元上受体蛋白的数量、位置和组成。其中,α-氨基-3-羟基-5-甲基-4-异恶唑丙酸受体(AMPARs)在谷氨酸释放后,负责大多数兴奋性哺乳动物突触的突触后去极化。AMPARs不断地在细胞表面运输,一旦到达表面,AMPARs会横向扩散进出突触区域。此外,AMPARs的亚细胞分布受活动模式的影响,经典的例子分别是在长期增强(LTP)和长期抑制(LTD)诱导后,AMPARs在突触处的插入或移除。至关重要的是,AMPARs的调节存在许多微妙之处,局部和全局突触活动究竟如何驱动不同亚型突触AMPARs的运输和保留,仍然备受关注。在这里,我们将综述活动如何对AMPAR的分布、运输及其亚基组成和磷酸化状态产生不同影响,并强调一些争议和遗留问题。至少可以说,由于AMPAR领域非常广泛,本综述将主要关注海马体中的细胞和分子研究。对于因篇幅限制而未能直接引用其作品的作者,我们深表歉意。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b831/8979068/926b12d0b639/fnsyn-14-833782-g0001.jpg

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