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内源性孤啡肽阿片肽释放的基因编码传感器的研制。

Development of a genetically encoded sensor for probing endogenous nociceptin opioid peptide release.

机构信息

Institute of Pharmacology and Toxicology, University of Zürich, Zürich, Switzerland.

Neuroscience Center Zurich, University and ETH Zürich, Zürich, Switzerland.

出版信息

Nat Commun. 2024 Jun 25;15(1):5353. doi: 10.1038/s41467-024-49712-0.

Abstract

Nociceptin/orphanin-FQ (N/OFQ) is a recently appreciated critical opioid peptide with key regulatory functions in several central behavioral processes including motivation, stress, feeding, and sleep. The functional relevance of N/OFQ action in the mammalian brain remains unclear due to a lack of high-resolution approaches to detect this neuropeptide with appropriate spatial and temporal resolution. Here we develop and characterize NOPLight, a genetically encoded sensor that sensitively reports changes in endogenous N/OFQ release. We characterized the affinity, pharmacological profile, spectral properties, kinetics, ligand selectivity, and potential interaction with intracellular signal transducers of NOPLight in vitro. Its functionality was established in acute brain slices by exogeneous N/OFQ application and chemogenetic induction of endogenous N/OFQ release from PNOC neurons. In vivo studies with fibre photometry enabled direct recording of NOPLight binding to exogenous N/OFQ receptor ligands, as well as detection of endogenous N/OFQ release within the paranigral ventral tegmental area (pnVTA) during natural behaviors and chemogenetic activation of PNOC neurons. In summary, we show here that NOPLight can be used to detect N/OFQ opioid peptide signal dynamics in tissue and freely behaving animals.

摘要

孤啡肽(Nociceptin/orphanin-FQ,N/OFQ)是一种新近被认识的关键性阿片肽,在包括动机、应激、摄食和睡眠在内的多种中枢行为过程中具有关键的调节功能。由于缺乏高分辨率的方法来以适当的时空分辨率检测这种神经肽,因此 N/OFQ 在哺乳动物大脑中的功能相关性仍不清楚。在这里,我们开发并表征了 NOPLight,这是一种基因编码的传感器,可以灵敏地报告内源性 N/OFQ 释放的变化。我们在体外对 NOPLight 的亲和力、药理学特征、光谱特性、动力学、配体选择性以及与细胞内信号转导物的潜在相互作用进行了表征。通过外源性 N/OFQ 应用和化学遗传诱导 PNOC 神经元内源性 N/OFQ 的释放,在急性脑片中确立了其功能。通过光纤光度法进行的体内研究,能够直接记录 NOPLight 与外源性 N/OFQ 受体配体的结合,以及在自然行为和化学遗传激活 PNOC 神经元期间,检测到 pnVTA 内源性 N/OFQ 的释放。总之,我们在这里表明,NOPLight 可用于检测组织和自由活动动物中的 N/OFQ 阿片肽信号动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9e3/11199706/8b919186f851/41467_2024_49712_Fig1_HTML.jpg

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