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新皮层第5层中钙通透性AMPA受体的突触特异性表达。

Synapse-specific expression of calcium-permeable AMPA receptors in neocortical layer 5.

作者信息

Lalanne Txomin, Oyrer Julia, Mancino Adamo, Gregor Erica, Chung Andrew, Huynh Louis, Burwell Sasha, Maheux Jérôme, Farrant Mark, Sjöström P Jesper

机构信息

Centre for Research in Neuroscience, Department of Neurology and Neurosurgery, The Research Institute of the McGill University Health Centre, Montreal General Hospital, Montreal, Quebec, Canada.

Integrated Program in Neuroscience, McGill University, Montreal, Quebec, Canada.

出版信息

J Physiol. 2016 Feb 15;594(4):837-61. doi: 10.1113/JP271394. Epub 2015 Dec 17.

Abstract

KEY POINTS

In the hippocampus, calcium-permeable AMPA receptors have been found in a restricted subset of neuronal types that inhibit other neurons, although their localization in the neocortex is less well understood. In the present study, we looked for calcium-permeable AMPA receptors in two distinct populations of neocortical inhibitory neurons: basket cells and Martinotti cells. We found them in the former but not in the latter. Furthermore, in basket cells, these receptors were associated with particularly fast responses. Computer modelling predicted (and experiments verified) that fast calcium-permeable AMPA receptors enable basket cells to respond rapidly, such that they promptly inhibit neighbouring cells and shut down activity. The results obtained in the present study help our understanding of pathologies such as stroke and epilepsy that have been associated with disordered regulation of calcium-permeable AMPA receptors.

ABSTRACT

AMPA-type glutamate receptors (AMPARs) lacking an edited GluA2 subunit are calcium-permeable (CP) and contribute to synaptic plasticity in several hippocampal interneuron types, although their precise role in the neocortex is not well described. We explored the presence of CP-AMPARs at pyramidal cell (PC) inputs to Martinotti cells (MCs) and basket cells (BCs) in layer 5 of the developing mouse visual cortex (postnatal days 12-21). GluA2 immunolabelling was stronger in MCs than in BCs. A differential presence of CP-AMPARs at PC-BC and PC-MC synapses was confirmed electrophysiologically, based on measures of spermine-dependent rectification and CP-AMPAR blockade by 1-naphtyl acetyl spermine using recordings from synaptically connected cell pairs, NPEC-AMPA uncaging and miniature current recordings. In addition, CP-AMPAR expression in BCs was correlated with rapidly decaying synaptic currents. Computer modelling predicted that this reduces spike latencies and sharpens suprathreshold responses in BCs, which we verified experimentally using the dynamic clamp technique. Thus, the synapse-specific expression of CP-AMPARs may critically influence both plasticity and information processing in neocortical microcircuits.

摘要

关键点

在海马体中,钙通透性AMPA受体存在于抑制其他神经元的特定神经元类型亚群中,尽管它们在新皮层中的定位尚不太清楚。在本研究中,我们在新皮层抑制性神经元的两个不同群体中寻找钙通透性AMPA受体:篮状细胞和马丁诺蒂细胞。我们在前一种细胞中发现了它们,而后一种细胞中未发现。此外,在篮状细胞中,这些受体与特别快速的反应相关。计算机建模预测(并经实验验证),快速的钙通透性AMPA受体使篮状细胞能够快速反应,从而迅速抑制邻近细胞并终止活动。本研究获得的结果有助于我们理解与钙通透性AMPA受体调节紊乱相关的中风和癫痫等病症。

摘要

缺乏编辑后的GluA2亚基的AMPA型谷氨酸受体(AMPARs)具有钙通透性(CP),并在几种海马中间神经元类型中促进突触可塑性,尽管它们在新皮层中的精确作用尚未得到充分描述。我们在发育中的小鼠视觉皮层第5层(出生后第12 - 21天)的马丁诺蒂细胞(MCs)和篮状细胞(BCs)的锥体细胞(PC)输入处探索了CP-AMPARs的存在情况。GluA2免疫标记在MCs中比在BCs中更强。基于使用突触连接细胞对的记录、NPEC-AMPA解笼和微小电流记录,通过精胺依赖性整流测量和1-萘基乙酰精胺对CP-AMPAR的阻断,电生理学上证实了PC-BC和PC-MC突触处CP-AMPARs的差异存在。此外,BCs中CP-AMPAR的表达与快速衰减的突触电流相关。计算机建模预测,这会降低BCs中的动作电位潜伏期并锐化阈上反应,我们使用动态钳技术通过实验验证了这一点。因此,CP-AMPARs的突触特异性表达可能对新皮层微回路中的可塑性和信息处理产生关键影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c93/4753277/0429e81fe2eb/TJP-594-0837-g001.jpg

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