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Globus Pallidus Externus Neurons Expressing parvalbumin Interconnect the Subthalamic Nucleus and Striatal Interneurons

机译:表达小白蛋白的苍白球外部神经元互连丘脑下核和纹状体中神经元

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摘要

The globus pallidus externus (GP) is a nucleus of the basal ganglia (BG), containing GABAergic projection neurons that arborize widely throughout the BG, thalamus and cortex. Ongoing work seeks to map axonal projection patterns from GP cell types, as defined by their electrophysiological and molecular properties. Here we use transgenic mice and recombinant viruses to characterize parvalbumin expressing (PV+) GP neurons within the BG circuit. We confirm that PV+ neurons 1) make up ~40% of the GP neurons 2) exhibit fast-firing spontaneous activity and 3) provide the major axonal arborization to the STN and substantia nigra reticulata/compacta (SNr/c). PV+ neurons also innervate the striatum. Retrograde labeling identifies ~17% of pallidostriatal neurons as PV+, at least a subset of which also innervate the STN and SNr. Optogenetic experiments in acute brain slices demonstrate that the PV+ pallidostriatal axons make potent inhibitory synapses on low threshold spiking (LTS) and fast-spiking interneurons (FS) in the striatum, but rarely on spiny projection neurons (SPNs). Thus PV+ GP neurons are synaptically positioned to directly coordinate activity between BG input nuclei, the striatum and STN, and thalamic-output from the SNr.
机译:苍白球外部(GP)是基底神经节(BG)的核,包含GABA能投射神经元,在整个BG,丘脑和皮层中广泛分布。正在进行的工作试图根据GP细胞的电生理和分子特性来绘制其轴突投影图。在这里,我们使用转基因小鼠和重组病毒来表征BG回路中表达小白蛋白的(PV + )GP神经元。我们证实PV + 神经元1)约占GP神经元的40%2)表现出快速自发的活性,并且3)向STN和黑质网状/致密质提供主要的轴突乔化( SNr / c)。 PV + 神经元也支配纹状体。逆行标记可将约17%的睑缘神经元识别为PV + ,其中至少一个子集也可支配STN和SNr。急性脑切片的光遗传学实验表明,PV + 睑缘轴突对纹状体的低阈值尖峰(LTS)和快速尖峰中神经元(FS)产生有效的抑制突触,但对棘突状神经元很少( SPN)。因此,PV + GP神经元被突触定位,以直接协调BG输入核,纹状体和STN与SNr的丘脑输出之间的活动。

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