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苍白球中的一个二突触回路控制运动抑制。

A Disynaptic Circuit in the Globus Pallidus Controls Locomotion Inhibition.

机构信息

Université de Bordeaux, Institut des Maladies Neurodégénératives, 33076 Bordeaux, France; CNRS UMR 5293, Institut des Maladies Neurodégénératives, 33076 Bordeaux, France.

Université de Bordeaux, CNRS UMR 5287, INCIA, 33076 Bordeaux, France.

出版信息

Curr Biol. 2021 Feb 22;31(4):707-721.e7. doi: 10.1016/j.cub.2020.11.019. Epub 2020 Dec 10.

Abstract

The basal ganglia (BG) inhibit movements through two independent circuits: the striatal neuron-indirect and the subthalamic nucleus-hyperdirect pathways. These pathways exert opposite effects onto external globus pallidus (GPe) neurons, whose functional importance as a relay has changed drastically with the discovery of two distinct cell types, namely the prototypic and the arkypallidal neurons. However, little is known about the synaptic connectivity scheme of different GPe neurons toward both motor-suppressing pathways, as well as how opposite changes in GPe neuronal activity relate to locomotion inhibition. Here, we optogenetically dissect the input organizations of prototypic and arkypallidal neurons and further define the circuit mechanism and behavioral outcome associated with activation of the indirect or hyperdirect pathways. This work reveals that arkypallidal neurons are part of a novel disynaptic feedback loop differentially recruited by the indirect or hyperdirect pathways and that broadcasts inhibitory control onto locomotion only when arkypallidal neurons increase their activity.

摘要

基底神经节(BG)通过两个独立的回路抑制运动:纹状体神经元间接通路和丘脑底核-超直接通路。这些通路对外部苍白球(GPe)神经元产生相反的影响,其作为中继的功能重要性随着两种不同细胞类型的发现而发生了巨大变化,即原型和arkypallidal 神经元。然而,对于不同的 GPe 神经元向两种运动抑制通路的突触连接方案以及 GPe 神经元活动的相反变化与运动抑制的关系知之甚少。在这里,我们通过光遗传学方法对原型和 arkypallidal 神经元的输入组织进行了剖析,并进一步定义了与间接或超直接通路激活相关的回路机制和行为结果。这项工作表明,arkypallidal 神经元是由间接或超直接通路募集的新型双突触反馈回路的一部分,并且仅当 arkypallidal 神经元增加其活动时,才会将抑制控制广播到运动上。

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