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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Metabotropic Modulation of Potassium Channels During Synaptic Plasticity
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Metabotropic Modulation of Potassium Channels During Synaptic Plasticity

机译:突触可塑性期间钾通道的代谢调制

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Besides their primary function mediating the repolarization phase of action potentials, potassium channels exquisitely and ubiquitously regulate the resting membrane potential of neurons and therefore have a key role establishing their intrinsic excitability. This group of proteins is composed of a very diverse collection of voltage-dependent and-independent ion channels, whose specific distribution is finely tuned at the level of the synapse. Both at the presynaptic and postsynaptic membranes, different types of potassium channels are subjected to modulation by second messenger signaling cascades triggered by metabotropic receptors, which in this way serve as a link between neurotransmitter actions and changes in the neuron membrane excitability. On the one hand, by regulating the resting membrane potential of the postsynaptic membrane, potassium channels appear to be critical towards setting the threshold for the induction of long-term potentiation and depression. On the other hand, these channels maintain the presynaptic membrane potential under control, therefore influencing the probability of neurotransmitter release underlying different forms of short-term plasticity. In the present review, we examine in detail the role of metabotropic receptors translating their activation by different neurotransmitters into a final effect modulating several types of potassium channels. Furthermore, we evaluate the consequences that this interplay has on the induction and maintenance of different forms of synaptic plasticity. This article is part of a Special Issue entitled: Metabotropic Regulation of Synaptic Plasticity. (c) 2020 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:钾通道除了主要功能介导动作电位的复极期外,还广泛而精细地调节神经元的静息膜电位,因此在建立其内在兴奋性方面起着关键作用。这组蛋白质由多种多样的电压依赖性和独立的离子通道组成,其特定分布在突触水平上得到了微调。在突触前膜和突触后膜上,不同类型的钾通道都受到代谢受体触发的第二信使信号级联的调节,以这种方式作为神经递质作用和神经元膜兴奋性变化之间的联系。一方面,通过调节突触后膜的静息膜电位,钾通道似乎对设定诱导长时程增强和抑制的阈值至关重要。另一方面,这些通道使突触前膜电位处于受控状态,因此影响了不同形式的短期可塑性下神经递质释放的可能性。在本综述中,我们详细研究了代谢受体将不同神经递质的激活转化为调节几种钾通道的最终效应的作用。此外,我们还评估了这种相互作用对不同形式突触可塑性的诱导和维持的影响。这篇文章是特刊《突触可塑性的代谢调节》的一部分。(c) 2020年伊布罗。爱思唯尔有限公司出版。版权所有。

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