Divergent pallidal pathways underlying distinct Parkinsonian behavioral deficits

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作者
Varoth Lilascharoen
Eric Hou-Jen Wang
Nam Do
Stefan Carl Pate
Amanda Ngoc Tran
Christopher Dabin Yoon
Jun-Hyeok Choi
Xiao-Yun Wang
Horia Pribiag
Young-Gyun Park
Kwanghun Chung
Byung Kook Lim
机构
[1] University of California,Neurobiology Section, Division of Biological Sciences
[2] San Diego,Biological Sciences Graduate Program
[3] University of California,Biomedical Sciences Graduate Program
[4] San Diego,Picower Institute for Learning and Memory
[5] University of California,undefined
[6] San Diego,undefined
[7] Massachusetts Institute of Technology,undefined
来源
Nature Neuroscience | 2021年 / 24卷
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摘要
The basal ganglia regulate a wide range of behaviors, including motor control and cognitive functions, and are profoundly affected in Parkinson’s disease (PD). However, the functional organization of different basal ganglia nuclei has not been fully elucidated at the circuit level. In this study, we investigated the functional roles of distinct parvalbumin-expressing neuronal populations in the external globus pallidus (GPe-PV) and their contributions to different PD-related behaviors. We demonstrate that substantia nigra pars reticulata (SNr)-projecting GPe-PV neurons and parafascicular thalamus (PF)-projecting GPe-PV neurons are associated with locomotion and reversal learning, respectively. In a mouse model of PD, we found that selective manipulation of the SNr-projecting GPe-PV neurons alleviated locomotor deficit, whereas manipulation of the PF-projecting GPe-PV neurons rescued the impaired reversal learning. Our findings establish the behavioral importance of two distinct GPe-PV neuronal populations and, thereby, provide a new framework for understanding the circuit basis of different behavioral deficits in the Parkinsonian state.
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页码:504 / 515
页数:11
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