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Transl Perioper Pain Med. 2019;6(4):98-103. doi: 10.31480/2330-4871/095. Epub 2019 Aug 13.
2
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J Biomol Struct Dyn. 2020 Sep;38(14):4364-4370. doi: 10.1080/07391102.2019.1677502. Epub 2019 Oct 17.
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Structure of the µ-opioid receptor-G protein complex.μ-阿片受体- G 蛋白复合物的结构。
Nature. 2018 Jun;558(7711):547-552. doi: 10.1038/s41586-018-0219-7. Epub 2018 Jun 13.
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All-Electronic Quantification of Neuropeptide-Receptor Interaction Using a Bias-Free Functionalized Graphene Microelectrode.使用无偏功能化石墨烯微电极对神经肽-受体相互作用进行全电子定量分析。
ACS Nano. 2018 May 22;12(5):4218-4223. doi: 10.1021/acsnano.7b07474. Epub 2018 Apr 17.
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Real-time reliable determination of binding kinetics of DNA hybridization using a multi-channel graphene biosensor.利用多通道石墨烯生物传感器实时可靠地测定 DNA 杂交的结合动力学。
Nat Commun. 2017 Mar 21;8:14902. doi: 10.1038/ncomms14902.
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Alternatively spliced mu opioid receptor C termini impact the diverse actions of morphine.可变剪接的μ阿片受体C末端影响吗啡的多种作用。
J Clin Invest. 2017 Apr 3;127(4):1561-1573. doi: 10.1172/JCI88760. Epub 2017 Mar 20.
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Scalable Production of High-Sensitivity, Label-Free DNA Biosensors Based on Back-Gated Graphene Field Effect Transistors.基于背栅式石墨烯场效应晶体管的高灵敏度、无标记 DNA 生物传感器的可扩展制造。
ACS Nano. 2016 Sep 27;10(9):8700-4. doi: 10.1021/acsnano.6b04110. Epub 2016 Sep 2.
8
Characterization of a computationally designed water-soluble human μ-opioid receptor variant using available structural information.利用现有结构信息对通过计算设计的水溶性人μ-阿片受体变体进行表征。
Anesthesiology. 2014 Oct;121(4):866-75. doi: 10.1097/ALN.0000000000000308.
9
Scalable production of highly sensitive nanosensors based on graphene functionalized with a designed G protein-coupled receptor.基于用设计的G蛋白偶联受体功能化的石墨烯的高灵敏度纳米传感器的可扩展生产。
Nano Lett. 2014 May 14;14(5):2709-14. doi: 10.1021/nl5006349. Epub 2014 Apr 21.
10
Novel molecular targets of dezocine and their clinical implications.地佐辛的新型分子靶点及其临床意义。
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一种新型石墨烯生物传感器证明,μ阿片受体的C末端在与G蛋白的相互作用中起关键作用。

The C-terminus of the mu opioid receptor is critical in G-protein interaction as demonstrated by a novel graphene biosensor.

作者信息

Wen Chengyu, Selling Bernard, Yeliseev Alexei, Xi Jin, Perez-Aguilar Jose Manuel, Gao Zhaoli, Saven Jeffery G, Johnson A T Charlie, Liu Renyu

机构信息

Department of Electrical and Systems Engineering, University of Pennsylvania, Philadelphia, PA 19104 USA.

Department of Anesthesiology and Critical Care, University of Pennsylvania, Philadelphia PA 19104, USA.

出版信息

IEEE Sens J. 2021 Mar;21(5):5758-5762. doi: 10.1109/jsen.2020.3043149. Epub 2020 Dec 7.

DOI:10.1109/jsen.2020.3043149
PMID:33679256
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7935050/
Abstract

Several water-soluble variants of the human mu opioid receptor (wsMORs) have been designed and expressed, which enables the detection of opioids in the nM to pM range using biosensing platforms. The tools previously developed allowed us to investigate MOR and G-protein interactions in a lipid free system to demonstrate that the lipid bilayer might not be essential for the G-protein recognition and binding. In this study, we are able to investigate G-protein interactions with MOR by using graphene enabled technology, in a lipid free system, with a high sensitivity in a real time manner. A new wsMOR with the native C-terminus was designed, expressed and then immobilized on the surfaces of scalable graphene field effect transistor (GFET)-based biosensors, enabling the recording of wsMOR/G-protein interaction with an electronic readout. G-protein only interacts with the wsMOR in the presence of the native MOR C-terminus with a K of 32.3±11.1 pM. The electronic readout of such interaction is highly reproducible with little variance across 50 devices in one biosensor array. For devices with receptors that do not have the native C-terminus, no significant electronic response was observed in the presence of G-protein, indicating an absence of interaction. These findings reveal that lipid environment is not essential for the G-protein interaction with MOR, however, the C-terminus of MOR is essential for G-protein recognition and high affinity binding. A system to detect MOR-G protein interaction is developed. wsMOR-G2_Cter provides a novel tool to investigate the role of C terminus in the signaling pathway.

摘要

已设计并表达了几种人μ阿片受体的水溶性变体(wsMORs),这使得能够使用生物传感平台在纳摩尔至皮摩尔范围内检测阿片类药物。先前开发的工具使我们能够在无脂质系统中研究MOR与G蛋白的相互作用,以证明脂质双层对于G蛋白的识别和结合可能不是必需的。在本研究中,我们能够在无脂质系统中使用基于石墨烯的技术以实时高灵敏度研究G蛋白与MOR的相互作用。设计、表达了一种具有天然C末端的新型wsMOR,然后将其固定在基于可扩展石墨烯场效应晶体管(GFET)的生物传感器表面,从而能够通过电子读数记录wsMOR/G蛋白相互作用。G蛋白仅在天然MOR C末端存在的情况下与wsMOR相互作用,解离常数为32.3±11.1皮摩尔。这种相互作用的电子读数具有高度可重复性,在一个生物传感器阵列中的50个器件之间变化很小。对于没有天然C末端的受体的器件,在存在G蛋白的情况下未观察到明显的电子响应,表明不存在相互作用。这些发现表明脂质环境对于G蛋白与MOR的相互作用不是必需的,然而,MOR的C末端对于G蛋白的识别和高亲和力结合是必需的。开发了一种检测MOR-G蛋白相互作用的系统。wsMOR-G2_Cter提供了一种研究C末端在信号通路中作用的新型工具。