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纹状体胆碱能中间神经元的特定隔室树突信息处理通过肽类神经调制重新配置。

Compartment-specific dendritic information processing in striatal cholinergic interneurons is reconfigured by peptide neuromodulation.

机构信息

Queensland Brain Institute, The University of Queensland, St. Lucia, QLD 4072, Australia.

Queensland Brain Institute, The University of Queensland, St. Lucia, QLD 4072, Australia.

出版信息

Neuron. 2023 Jun 21;111(12):1933-1951.e3. doi: 10.1016/j.neuron.2023.03.038. Epub 2023 Apr 21.

Abstract

Cholinergic interneurons are central hubs of the striatal neuronal network, controlling information processing in a behavioral-state-dependent manner. It remains unknown, however, how such state transitions influence the integrative properties of these neurons. To address this, we made simultaneous somato-dendritic recordings from identified rodent cholinergic interneurons, revealing that action potentials are initiated at dendritic sites because of a dendritic axonal origin. Functionally, this anatomical arrangement ensured that the action potential initiation threshold was lowest at axon-bearing dendritic sites, a privilege efficacy powerfully accentuated at the hyperpolarized membrane potentials achieved in cholinergic interneurons following salient behavioral stimuli. Experimental analysis revealed the voltage-dependent attenuation of the efficacy of non-axon-bearing dendritic excitatory input was mediated by the recruitment of dendritic potassium channels, a regulatory mechanism that, in turn, was controlled by the pharmacological activation of neurokinin receptors. Together, these results indicate that the neuropeptide microenvironment dynamically controls state- and compartment-dependent dendritic information processing in striatal cholinergic interneurons.

摘要

胆碱能中间神经元是纹状体神经网络的中枢枢纽,以行为状态依赖的方式控制信息处理。然而,目前尚不清楚这种状态转换如何影响这些神经元的综合特性。为了解决这个问题,我们对已识别的啮齿动物胆碱能中间神经元进行了同时的体树突记录,结果表明,由于树突轴突起源,动作电位在树突部位起始。从功能上讲,这种解剖结构的安排确保了动作电位起始阈值在带有轴突的树突部位最低,这种特权在胆碱能中间神经元在显著行为刺激后达到的超极化膜电位下得到了有力的强调。实验分析表明,非轴突承载树突兴奋性输入效率的电压依赖性衰减是由树突钾通道的募集介导的,这种调节机制反过来又受到神经激肽受体药理学激活的控制。总之,这些结果表明,神经肽微环境动态控制纹状体胆碱能中间神经元中与状态和区室相关的树突信息处理。

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