首页> 美国卫生研究院文献>The Journal of Neuroscience >Nerve Terminal Nicotinic Acetylcholine Receptors Initiate Quantal GABA Release from Perisomatic Interneurons by Activating Axonal T-Type (Cav3) Ca2+ Channels and Ca2+ Release from Stores
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Nerve Terminal Nicotinic Acetylcholine Receptors Initiate Quantal GABA Release from Perisomatic Interneurons by Activating Axonal T-Type (Cav3) Ca2+ Channels and Ca2+ Release from Stores

机译:神经末梢的烟碱型乙酰胆碱受体通过激活轴突T型(Cav3)Ca2 +通道和商店中的Ca2 +释放启动了Perisomatic Interneurons释放的GABA。

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摘要

Release of conventional neurotransmitters is mainly controlled by calcium (Ca2+) influx via high-voltage-activated (HVA), Cav2, channels (“N-, P/Q-, or R-types”) that are opened by action potentials. Regulation of transmission by subthreshold depolarizations does occur, but there is little evidence that low-voltage-activated, Cav3 (“T-type”), channels take part. GABA release from cortical perisomatic-targeting interneurons affects numerous physiological processes, and yet its underlying control mechanisms are not fully understood. We investigated whether T-type Ca2+ channels are involved in regulating GABA transmission from these cells in rat hippocampal CA1 using a combination of whole-cell voltage-clamp, multiple-fluorescence confocal microscopy, dual-immunolabeling electron-microscopy, and optogenetic methods. We show that Cav3.1, T-type Ca2+ channels can be activated by α3β4 nicotinic acetylcholine receptors (nAChRs) that are located on the synaptic regions of the GABAergic perisomatic-targeting interneuronal axons, including the parvalbumin-expressing cells. Asynchronous, quantal GABA release can be triggered by Ca2+ influx through presynaptic T-type Ca2+ channels, augmented by Ca2+ from internal stores, following focal microiontophoretic activation of the α3β4 nAChRs. The resulting GABA release can inhibit pyramidal cells. The T-type Ca2+ channel-dependent mechanism is not dependent on, or accompanied by, HVA channel Ca2+ influx, and is insensitive to agonists of cannabinoid, μ-opioid, or GABAB receptors. It may therefore operate in parallel with the normal HVA-dependent processes. The results reveal new aspects of the regulation of GABA transmission and contribute to a deeper understanding of ACh and nicotine actions in CNS.
机译:常规神经递质的释放主要受钙(Ca 2 + )通过高压激活(HVA),Cav2,通道(“ N型,P / Q型或R型”)的流入控制)由动作电位打开。确实发生了亚阈值去极化对传输的调节,但是几乎没有证据表明低压激活的Cav3(“ T型”)通道参与了该过程。 GABA从靶向皮质介导的中间神经元的释放影响许多生理过程,但其潜在的控制机制尚未完全了解。我们通过全细胞电压钳,多荧光共聚焦显微镜,双重免疫标记的组合研究了T型Ca 2 + 通道是否参与调节大鼠海马CA1细胞中GABA的传递电子显微镜和光遗传学方法。我们显示,Cav3.1,T型Ca 2 + 通道可以被位于GABA能的靶向异源性神经节内轴突的突触区域的α3β4烟碱型乙酰胆碱受体(nAChRs)激活。表达小白蛋白的细胞。异步的GABA定量释放可以由Ca 2 + 通过突触前T型Ca 2 + 通道触发,而Ca 2 + 从内部存储,继之以α3β4nAChRs的局部微离子电泳激活。最终的GABA释放可抑制锥体细胞。 T型Ca 2 + 通道依赖性机制不依赖或伴随HVA通道Ca 2 + 流入,并且对大麻素μ激动剂不敏感类阿片或GABAB受体。因此,它可以与依赖于HVA的正常过程并行运行。结果揭示了GABA传递调控的新方面,并有助于加深对中枢神经系统中ACh和尼古丁作用的了解。

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