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BK 通道介导的反馈通路将单突触活动与重复放电中的动作电位锐化联系起来。

A BK channel-mediated feedback pathway links single-synapse activity with action potential sharpening in repetitive firing.

机构信息

Institute of Higher Nervous Activity and Neurophysiology, Moscow 117485, Russia.

Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow 117997, Russia.

出版信息

Sci Adv. 2018 Jul 4;4(7):eaat1357. doi: 10.1126/sciadv.aat1357. eCollection 2018 Jul.

Abstract

Action potential shape is a major determinant of synaptic transmission, and mechanisms of spike tuning are therefore of key functional significance. We demonstrate that synaptic activity itself modulates future spikes in the same neuron via a rapid feedback pathway. Using Ca imaging and targeted uncaging approaches in layer 5 neocortical pyramidal neurons, we show that the single spike-evoked Ca rise occurring in one proximal bouton or first node of Ranvier drives a significant sharpening of subsequent action potentials recorded at the soma. This form of intrinsic modulation, mediated by the activation of large-conductance Ca/voltage-dependent K channels (BK channels), acts to maintain high-frequency firing and limit runaway spike broadening during repetitive firing, preventing an otherwise significant escalation of synaptic transmission. Our findings identify a novel short-term presynaptic plasticity mechanism that uses the activity history of a bouton or adjacent axonal site to dynamically tune ongoing signaling properties.

摘要

动作电位的形状是突触传递的主要决定因素,因此尖峰调谐的机制具有关键的功能意义。我们证明,突触活动本身通过快速反馈途径调节同一神经元的未来尖峰。在 5 层新皮层锥体神经元中,我们使用 Ca 成像和靶向光解笼技术,证明发生在一个近端末梢或郎飞氏结第一个节点的单个尖峰诱发的 Ca 上升驱动随后在胞体记录的动作电位显著变锐。这种由大电导 Ca/电压依赖性 K 通道 (BK 通道) 激活介导的内在调制形式,作用是维持高频放电,并在重复放电期间限制失控的尖峰展宽,防止否则会显著增加突触传递。我们的发现确定了一种新的短期突触前可塑性机制,该机制使用末梢或相邻轴突部位的活动历史来动态调节正在进行的信号转导特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8382/6031373/a0f7e8f406fc/aat1357-F1.jpg

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