Segregated basal ganglia output pathways correspond to genetically divergent neuronal subclasses

Alana Mendelsohn, Laudan Nikoobakht, Jay Bikoff, Rui Costa
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Abstract

The basal ganglia control multiple sensorimotor behaviors though anatomically segregated and topographically organized subcircuits with outputs to specific downstream circuits. However, it is unclear how the anatomical organization of basal ganglia output circuits relates to the molecular diversity of cell types. Here, we demonstrate that the major output nucleus of the basal ganglia, the substantia nigra pars reticulata (SNr) is comprised of transcriptomically distinct subclasses that reflect its distinct progenitor lineages. We show that these subclasses are topographically organized within SNr, project to distinct targets in the midbrain and hindbrain, and receive inputs from different striatal subregions. Finally, we show that these mouse subclasses are also identifiable in human SNr neurons, suggesting that the genetic organization of SNr is evolutionarily conserved. These findings provide a unifying logic for how the developmental specification of diverse SNr neurons relates to the anatomical organization of basal ganglia circuits controlling specialized downstream brain regions.
分离的基底神经节输出通路与基因不同的神经元亚类相对应
基底节通过解剖学上分离和地形学上组织的子回路控制多种感觉运动行为,并输出到特定的下游回路。然而,基底节输出回路的解剖组织与细胞类型的分子多样性之间的关系尚不清楚。在这里,我们证明了基底节的主要输出核--黑质网状旁(SNr)由转录组学上不同的亚类组成,这些亚类反映了其不同的祖系。我们的研究表明,这些亚类在黑质网状突起内具有拓扑结构,投射到中脑和后脑的不同靶点,并接受来自不同纹状体亚区的输入。最后,我们还表明,这些小鼠亚类在人类 SNr 神经元中也是可以识别的,这表明 SNr 的遗传组织在进化过程中是保守的。这些发现提供了一个统一的逻辑,说明了不同的SNr神经元的发育规格如何与控制特化下游脑区的基底节回路的解剖组织相关联。
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