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用于探索多巴胺能神经元和神经回路功能的光激活多巴胺和舒必利

Photoactivatable Dopamine and Sulpiride to Explore the Function of Dopaminergic Neurons and Circuits.

作者信息

Asad Naeem, McLain Duncan E, Condon Alec F, Gore Sangram, Hampton Shahienaz E, Vijay Sauparnika, Williams John T, Dore Timothy M

机构信息

New York University Abu Dhabi, Saadiyat Island, PO Box 129188, Abu Dhabi, United Arab Emirates.

Department of Chemistry, University of Georgia, Athens, Georgia 30602, United States.

出版信息

ACS Chem Neurosci. 2020 Mar 18;11(6):939-951. doi: 10.1021/acschemneuro.9b00675. Epub 2020 Mar 4.

Abstract

Kinetic analysis of dopamine receptor activation and inactivation and the study of dopamine-dependent signaling requires precise simulation of the presynaptic release of the neurotransmitter dopamine and tight temporal control over the release of dopamine receptor antagonists. The 8-cyano-7-hydroxyquinolinyl (CyHQ) photoremovable protecting group was conjugated to dopamine and the dopamine receptor antagonist sulpiride to generate "caged" versions of these neuromodulators (CyHQ--DA and CyHQ-sulpiride, respectively) that could release their payloads with 365 or 405 nm light or through 2-photon excitation (2PE) at 740 nm. These compounds are stable under physiological conditions in the dark, yet photolyze rapidly and cleanly to yield dopamine or sulpiride and the caging remnant CyHQ-OH. CyHQ--DA mediated the light activation of dopamine-1 (D1) receptors on the breast cancer cell line MDA-MB-231 in culture. In mouse brain slice from the substantia nigra pars compacta, localized flash photolysis of CyHQ--DA accurately mimicked the natural presynaptic release of dopamine and activation of dopamine-2 (D2) receptors, causing a robust, concentration-dependent, and repeatable G protein-coupled inwardly rectifying potassium channel-mediated outward current in whole-cell voltage clamp recordings that was amplified by cocaine and blocked by sulpiride. Photolysis of CyHQ-sulpiride rapidly blocked synaptic activity, enabling measurement of the unbinding rates of dopamine and quinpirole, a D2 receptor agonist. These tools will enable more detailed study of dopamine receptors, their interactions with other GPCRs, and the physiology of dopamine signaling in the brain.

摘要

多巴胺受体激活与失活的动力学分析以及多巴胺依赖性信号传导的研究需要精确模拟神经递质多巴胺的突触前释放,并对多巴胺受体拮抗剂的释放进行严格的时间控制。将8-氰基-7-羟基喹啉基(CyHQ)光可去除保护基团与多巴胺和多巴胺受体拮抗剂舒必利缀合,以生成这些神经调节剂的“笼化”形式(分别为CyHQ-DA和CyHQ-舒必利),它们可以通过365或405nm光或在740nm处通过双光子激发(2PE)释放其有效载荷。这些化合物在生理条件下于黑暗中稳定,但能快速且完全地光解,产生多巴胺或舒必利以及笼化残余物CyHQ-OH。CyHQ-DA介导了培养的乳腺癌细胞系MDA-MB-231上多巴胺-1(D1)受体的光激活。在来自黑质致密部的小鼠脑片中,CyHQ-DA的局部闪光光解准确模拟了多巴胺的天然突触前释放和多巴胺-2(D2)受体的激活,在全细胞电压钳记录中引起了强大的、浓度依赖性的和可重复的G蛋白偶联内向整流钾通道介导的外向电流,该电流被可卡因放大并被舒必利阻断。CyHQ-舒必利的光解迅速阻断了突触活动,从而能够测量多巴胺和D2受体激动剂喹吡罗的解离速率。这些工具将使人们能够更详细地研究多巴胺受体、它们与其他G蛋白偶联受体的相互作用以及大脑中多巴胺信号传导的生理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4169/7101055/69375399e9e7/cn9b00675_0001.jpg

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