Neurons produce and release neuropeptides to communicate with one another. Despite their importance in brain function, circuit-based mechanisms of peptidergic transmission are poorly understood, primarily due to the lack of tools for monitoring and manipulating neuropeptide release in vivo. Here, we report the development of two genetically encoded tools for investigating peptidergic transmission in behaving mice: a genetically encoded large dense core vesicle (LDCV) sensor that detects presynaptic neuropeptide release and a genetically encoded silencer that specifically degrades neuropeptides inside LDCVs. Using these tools, we show that neuropeptides, not glutamate, encode the unconditioned stimulus in the parabrachial-to-amygdalar threat pathway during Pavlovian threat learning. We also show that neuropeptides play important roles in encoding positive valence and suppressing conditioned threat response in the amygdala-to-parabrachial endogenous opioidergic circuit. These results show that our sensor and silencer for presynaptic peptidergic transmission are reliable tools to investigate neuropeptidergic systems in awake, behaving animals.
Presynaptic sensor and silencer of peptidergic transmission reveal neuropeptides as primary transmitters in pontine fear circuit.
突触前感受器和肽能传递抑制器揭示神经肽是脑桥恐惧回路中的主要递质
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作者:Kim Dong-Il, Park Sekun, Park Seahyung, Ye Mao, Chen Jane Y, Kang Sukjae J, Jhang Jinho, Hunker Avery C, Zweifel Larry S, Caron Kathleen M, Vaughan Joan M, Saghatelian Alan, Palmiter Richard D, Han Sung
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2024 | 起止号: | 2024 Sep 5; 187(18):5102-5117 |
| doi: | 10.1016/j.cell.2024.06.035 | 研究方向: | 神经科学 |
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