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不同突触后 GluN2 亚型的突触特异性多样性决定了脊髓板层 I 中的传递强度。

Synapse-specific diversity of distinct postsynaptic GluN2 subtypes defines transmission strength in spinal lamina I.

作者信息

Pitcher Graham M, Garzia Livia, Morrissy A Sorana, Taylor Michael D, Salter Michael W

机构信息

Program in Neurosciences and Mental Health, The Hospital for Sick Children, Toronto, ON, Canada.

Department of Physiology, University of Toronto, Toronto, ON, Canada.

出版信息

Front Synaptic Neurosci. 2023 Jul 12;15:1197174. doi: 10.3389/fnsyn.2023.1197174. eCollection 2023.


DOI:10.3389/fnsyn.2023.1197174
PMID:37503309
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10368998/
Abstract

The unitary postsynaptic response to presynaptic quantal glutamate release is the fundamental basis of excitatory information transfer between neurons. The view, however, of individual glutamatergic synaptic connections in a population as homogenous, fixed-strength units of neural communication is becoming increasingly scrutinized. Here, we used minimal stimulation of individual glutamatergic afferent axons to evoke single synapse resolution postsynaptic responses from central sensory lamina I neurons in an adult rat spinal slice preparation. We detected unitary events exhibiting a NMDA receptor component with distinct kinetic properties across synapses conferred by specific GluN2 subunit composition, indicative of GluN2 subtype-based postsynaptic heterogeneity. GluN2A, 2A and 2B, or 2B and 2D synaptic predominance functioned on distinct lamina I neuron types to narrowly, intermediately, or widely tune, respectively, the duration of evoked unitary depolarization events from resting membrane potential, which enabled individual synapses to grade differentially depolarizing steps during temporally patterned afferent input. Our results lead to a model wherein a core locus of proteomic complexity prevails at this central glutamatergic sensory synapse that involves distinct GluN2 subtype configurations. These findings have major implications for subthreshold integrative capacity and transmission strength in spinal lamina I and other CNS regions.

摘要

突触后对突触前量子化谷氨酸释放的单一反应是神经元之间兴奋性信息传递的基本基础。然而,将群体中单个谷氨酸能突触连接视为神经通信的同质、固定强度单元的观点正受到越来越多的审视。在这里,我们对成年大鼠脊髓切片制备中的单个谷氨酸能传入轴突进行最小刺激,以诱发来自中枢感觉I层神经元的单突触分辨率突触后反应。我们检测到单一事件,这些事件表现出具有不同动力学特性的NMDA受体成分,这些特性由特定的GluN2亚基组成赋予突触,这表明基于GluN2亚型的突触后异质性。GluN2A、2A和2B或2B和2D突触优势分别作用于不同的I层神经元类型,以分别狭窄、中等或广泛地调节从静息膜电位诱发的单一去极化事件的持续时间,这使得单个突触能够在时间模式化的传入输入期间分级不同的去极化步骤。我们的结果导致了一个模型,其中蛋白质组复杂性的核心位点在这个涉及不同GluN2亚型配置的中枢谷氨酸能感觉突触中占主导地位。这些发现对脊髓I层和其他中枢神经系统区域的阈下整合能力和传递强度具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/a08f8eab32c2/fnsyn-15-1197174-g006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/3a14974d45bb/fnsyn-15-1197174-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/08cb0d04ef94/fnsyn-15-1197174-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/7deb6019f2c2/fnsyn-15-1197174-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/534665245b63/fnsyn-15-1197174-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/c67dbad6035f/fnsyn-15-1197174-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/a08f8eab32c2/fnsyn-15-1197174-g006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/3a14974d45bb/fnsyn-15-1197174-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/08cb0d04ef94/fnsyn-15-1197174-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/7deb6019f2c2/fnsyn-15-1197174-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/534665245b63/fnsyn-15-1197174-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/c67dbad6035f/fnsyn-15-1197174-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1904/10368998/a08f8eab32c2/fnsyn-15-1197174-g006.jpg

相似文献

[1]
Synapse-specific diversity of distinct postsynaptic GluN2 subtypes defines transmission strength in spinal lamina I.

Front Synaptic Neurosci. 2023-7-12

[2]
Input-specific localization of NMDA receptor GluN2 subunits in thalamocortical neurons.

bioRxiv. 2024-8-25

[3]
Conserved contributions of NMDA receptor subtypes to synaptic responses in lamina II spinal neurons across early postnatal development.

Mol Brain. 2020-3-5

[4]
Synaptic GluN2A and GluN2B containing NMDA receptors within the superficial dorsal horn activated following primary afferent stimulation.

J Neurosci. 2014-8-13

[5]
Group II and group III metabotropic glutamate receptor agonists depress synaptic transmission in the rat spinal cord dorsal horn.

Neuroscience. 2000

[6]
Synaptic input of rat spinal lamina I projection and unidentified neurones in vitro.

J Physiol. 2005-7-15

[7]
Inhibition of glutamatergic synaptic input to spinal lamina II(o) neurons by presynaptic alpha(2)-adrenergic receptors.

J Neurophysiol. 2002-4

[8]
Xenon modulates synaptic transmission to rat hippocampal CA3 neurons at both pre- and postsynaptic sites.

J Physiol. 2019-11-8

[9]
Colocalization of distinct NMDA receptor subtypes at excitatory synapses in the entorhinal cortex.

J Neurophysiol. 2018-11-21

[10]
Activation of pharmacologically distinct metabotropic glutamate receptors depresses reticulospinal-evoked monosynaptic EPSPs in the lamprey spinal cord.

J Neurophysiol. 1996-12

引用本文的文献

[1]
Input-Specific Localization of NMDA Receptor GluN2 Subunits in Thalamocortical Neurons.

J Neurochem. 2025-3

[2]
Input-specific localization of NMDA receptor GluN2 subunits in thalamocortical neurons.

bioRxiv. 2024-8-25

本文引用的文献

[1]
Dynamic compartmental computations in tuft dendrites of layer 5 neurons during motor behavior.

Science. 2022-4-15

[2]
Nanoscale rules governing the organization of glutamate receptors in spine synapses are subunit specific.

Nat Commun. 2022-2-17

[3]
Protein-protein interactions at the NMDA receptor complex: From synaptic retention to synaptonuclear protein messengers.

Neuropharmacology. 2021-6-1

[4]
NMDA Receptors Enhance the Fidelity of Synaptic Integration.

eNeuro. 2021

[5]
Structure and function of a neocortical synapse.

Nature. 2021-3

[6]
Cortical response selectivity derives from strength in numbers of synapses.

Nature. 2021-2

[7]
The Synapse Diversity Dilemma: Molecular Heterogeneity Confounds Studies of Synapse Function.

Front Synaptic Neurosci. 2020-10-2

[8]
Local glutamate-mediated dendritic plateau potentials change the state of the cortical pyramidal neuron.

J Neurophysiol. 2021-1-1

[9]
A brainwide atlas of synapses across the mouse life span.

Science. 2020-6-11

[10]
Nanoscale co-organization and coactivation of AMPAR, NMDAR, and mGluR at excitatory synapses.

Proc Natl Acad Sci U S A. 2020-6-8

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