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A Novel CCK Receptor GPR173 Mediates Potentiation of GABAergic Inhibition

He, Ling; Shi, Heng; Zhang, Ge; Peng, Yujie; Ghosh, Avirup; Zhang, Mengfan; Hu, Xiaofeng; Liu, Chunhua; Shao, Yue; Wang, Shujie; Chen, Lijiang; Sun, Wenjian; Su, Junfeng; Chen, Xi; Zhang, Liang; Chan, Ying-Shing; Pei, Duanqing; Tortorella, Micky; Guo, Yiping; Yan, Hong*; He, Jufang*
Science Citation Index Expanded
广州医学院; 中国科学院; 5

摘要

Cholecystokinin (CCK) enables excitatory circuit long-term potentiation (LTP). Here, we investigated its involvement in the enhancement of inhibitory synapses. Activation of GABA neurons suppressed neuronal responses in the neocor-tex to a forthcoming auditory stimulus in mice of both sexes. High-frequency laser stimulation (HFLS) of GABAergic neurons potentiated this suppression. HFLS of CCK interneurons could induce the LTP of their inhibition toward py-ramidal neurons. This potentiation was abolished in CCK knock-out mice but intact in mice with both CCK1R and 2R knockout of both sexes. Next, we combined bioinformatics analysis, multiple unbiased cell-based assays, and histology examinations to identify a novel CCK receptor, GPR173. We propose GPR173 as CCK3R, which mediates the relation-ship between cortical CCK interneuron signaling and inhibitory LTP in the mice of either sex. Thus, GPR173 might represent a promising therapeutic target for brain disorders related to excitation and inhibition imbalance in the cortex.

关键词

CCK receptor CCK-GABA enhancement of the inhibition GPR173 inhibition inhibitory plasticity