4.7 Article

Npas1+-Nkx2.1+ Neurons Are an Integral Part of the Cortico-pallido-cortical Loop

期刊

JOURNAL OF NEUROSCIENCE
卷 40, 期 4, 页码 743-768

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.1199-19.2019

关键词

arkypallidal neurons; basal ganglia; cellular diversity; globus pallidus; pallidocortical neurons; prototypic neurons

资金

  1. National Institutes of Health [R01 NS069777, P50 NS047085, R01 MH112768, R01 NS097901, R01 MH109466, R01 NS088528]
  2. NARSAD Young Investigator Award
  3. Howard Hughes Medical Institute HHMI-PF Medical Research Fellowship
  4. AOmegaA Student Research Fellowship
  5. Northwestern University Weinberg Summer Research Grant
  6. [R01 NS096240]
  7. [R01 MH110556]
  8. [P50 DA044121]
  9. [R01 MH107742]
  10. [R01 MH108594]
  11. [R56 MH114032]
  12. [R21 AA026022]
  13. [R01 NS103993]
  14. [ZIA MH002497]
  15. [T32 NS041234]
  16. [F32 NS098793]
  17. [T32 AG020506]
  18. [U01 MH114829]
  19. [R01 MH116176]
  20. NATIONAL INSTITUTE OF MENTAL HEALTH [ZIAMH002497] Funding Source: NIH RePORTER

向作者/读者索取更多资源

Within the basal ganglia circuit, the external globus pallidus (GPe) is critically involved in motor control. Aside from Foxp2(+) - neurons and ChAT + neurons that have been established as unique neuron types, there is little consensus on the classification of GPe neurons. Properties of the remaining neuron types are poorly defined. In this study, we leverage new mouse lines, viral tools, and molecular markers to better define GPe neuron subtypes. We found that Sox6(+) represents a novel, defining marker for GPe neuron subtypes. Lhx6(+) neurons that lack the expression of Sox6(+ )were devoid of both parvalbumin and Npasl . This result confirms previous assertions of the existence of a unique Lhx6(+) population. Neurons that arise from the Dbxl(+) lineage were similarly abundant in the GPe and displayed a heterogeneous makeup. Importantly, tracing experiments revealed that Npasl(+)-Nkx2.1(+) neurons represent the principal noncholinergic, cortically-projecting neurons. In other words, they form the pallido-cortical arm of the cortico-pallido-cortical loop. Our data further show that pyramidal-tract neurons in the cortex collateralized within the GPe, forming a closed-loop system between the two brain structures. Overall, our findings reconcile some of the discrepancies that arose from differences in techniques or the reliance on preexisting tools. Although spatial distribution and electrophysiological properties of GPe neurons reaffirm the diversification of GPe subtypes, statistical analyses strongly support the notion that these neuron subtypes can be categorized under the two principal neuron classes: PV+- neurons and Npasl(+)- neurons.

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