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Differential contribution of TRPM4 and TRPM5 nonselective cation channels to the slow afterdepolarization in mouse prefrontal cortex neurons

机译:TRPM4和TRPM5非选择性阳离子通道对小鼠前额叶皮层神经元中缓慢的去极化作用的不同贡献

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摘要

In certain neurons from different brain regions, a brief burst of action potentials can activate a slow afterdepolarization (sADP) in the presence of muscarinic acetylcholine receptor agonists. The sADP, if suprathreshold, can contribute to persistent non-accommodating firing in some of these neurons. Previous studies have characterized a Ca2+-activated non-selective cation (CAN) current (ICAN) that is thought to underlie the sADP. ICAN depends on muscarinic receptor stimulation and exhibits a dependence on neuronal activity, membrane depolarization and Ca2+-influx similar to that observed for the sADP. Despite the widespread occurrence of sADPs in neurons throughout the brain, the molecular identity of the ion channels underlying these events, as well as ICAN, remains uncertain. Here we used a combination of genetic, pharmacological and electrophysiological approaches to characterize the molecular mechanisms underlying the muscarinic receptor-dependent sADP in layer 5 pyramidal neurons of mouse prefrontal cortex. First, we confirmed that in the presence of the cholinergic agonist carbachol a brief burst of action potentials triggers a prominent sADP in these neurons. Second, we confirmed that this sADP requires activation of a PLC signaling cascade and intracellular calcium signaling. Third, we obtained direct evidence that the transient receptor potential (TRP) melastatin 5 channel (TRPM5), which is thought to function as a CAN channel in non-neural cells, contributes importantly to the sADP in the layer 5 neurons. In contrast, the closely related TRPM4 channel may play only a minor role in the sADP.
机译:在来自不同大脑区域的某些神经元中,在毒蕈碱乙酰胆碱受体激动剂存在的情况下,短暂的动作电位爆发可以激活缓慢的去极化后(sADP)。如果高于阈值,sADP可能会导致其中一些神经元的持续性非适应性放电。以前的研究已经确定了Ca 2 + 活化的非选择性阳离子(CAN)电流(ICAN)的特征,该电流被认为是sADP的基础。 ICAN依赖于毒蕈碱受体刺激,并且与sADP相似,表现出对神经元活性,膜去极化和Ca 2 + -内流的依赖性。尽管sADPs在整个大脑的神经元中广泛存在,但这些事件以及ICAN背后的离子通道的分子身份仍然不确定。在这里,我们使用了遗传,药理和电生理学方法的组合来表征小鼠前额叶皮层第5层锥体神经元中毒蕈碱受体依赖性sADP的分子机制。首先,我们确认在胆碱能激动剂卡巴胆碱的存在下,短暂的动作电位爆发会在这些神经元中触发突出的sADP。其次,我们确认此sA​​DP需要激活PLC信号级联和细胞内钙信号传导。第三,我们获得了直接的证据,即瞬时受体电位(TRP)褪黑素5通道(TRPM5)被认为在非神经细胞中起CAN通道的作用,对第5层神经元中的sADP做出了重要贡献。相反,紧密相关的TRPM4通道可能仅在sADP中扮演次要角色。

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