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树突状突触活动的模拟信号传递到轴突会增强小脑分子层中间神经元的 GABA 释放。

Analogue signaling of somatodendritic synaptic activity to axon enhances GABA release in young cerebellar molecular layer interneurons.

机构信息

Departamento de Neurofisiología Celular y Molecular, Instituto de Investigaciones Biológicas Clemente Estable, Montevideo, Uruguay.

Department of Biophysics, Graduate School of Science, Kyoto University Oiwake-cho, Kyoto, Japan.

出版信息

Elife. 2023 Aug 11;12:e85971. doi: 10.7554/eLife.85971.

Abstract

Axons are equipped with the digital signaling capacity by which they generate and faithfully propagate action potentials (APs), and also with the analogue signaling capacity by which subthreshold activity in dendrites and soma is transmitted down the axon. Despite intense work, the extent and physiological role for subthreshold synaptic activity reaching the presynaptic boutons has remained elusive because of the technical limitation to record from them. To address this issue, we made simultaneous patch-clamp recordings from the presynaptic varicosities of cerebellar GABAergic interneurons together with their parent soma or postsynaptic target cells in young rat slices and/or primary cultures. Our direct functional dissection indicates that the somatodendritic spontaneous excitatory synaptic potentials are transmitted down the axon for significant distances, depolarizing presynaptic boutons. These analogously transmitted excitatory synaptic potentials augment presynaptic Ca influx upon arrival of an immediately following AP through a mechanism that involves a voltage-dependent priming of the Ca channels, leading to an increase in GABA release, without any modification in the presynaptic AP waveform or residual Ca. Our work highlights the role of the axon in synaptic integration.

摘要

轴突具有数字信号传递能力,可产生并忠实地传播动作电位 (AP),也具有模拟信号传递能力,可将树突和胞体中的亚阈活动沿轴突传递。尽管进行了大量研究,但由于从突触前末梢记录的技术限制,到达突触前末梢的亚阈突触活动的程度和生理作用仍然难以捉摸。为了解决这个问题,我们在幼年大鼠切片和/或原代培养物中,从小脑 GABA 能中间神经元的突触前膨体与它们的胞体或突触后靶细胞一起进行了同时的膜片钳记录。我们的直接功能剖析表明,树突体细胞体自发性兴奋性突触后电位沿轴突传递相当长的距离,使突触前末梢去极化。这些类似传递的兴奋性突触后电位在随后的 AP 到达时通过涉及钙通道电压依赖性引发的机制增加钙内流,导致 GABA 释放增加,而不会改变突触前 AP 波形或残留钙。我们的工作强调了轴突在突触整合中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6037/10421593/04fde94adef5/elife-85971-fig1.jpg

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