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BPTU是一种P2Y1受体变构拮抗剂,可阻断啮齿动物胃肠道中神经介导的抑制性神经肌肉反应。

BPTU, an allosteric antagonist of P2Y1 receptor, blocks nerve mediated inhibitory neuromuscular responses in the gastrointestinal tract of rodents.

作者信息

Mañé Noemí, Jiménez-Sábado Verónica, Jiménez Marcel

机构信息

Department of Cell Biology, Physiology and Immunology and Neuroscience Institute, Universitat Autònoma de Barcelona, Barcelona, Spain.

Department of Cell Biology, Physiology and Immunology and Neuroscience Institute, Universitat Autònoma de Barcelona, Barcelona, Spain; Centro de Investigación Biomédica en Red de Enfermedades Hepáticas y Digestivas, (CIBERehd), Instituto de Salud Carlos III, Barcelona, Spain.

出版信息

Neuropharmacology. 2016 Nov;110(Pt A):376-385. doi: 10.1016/j.neuropharm.2016.07.033. Epub 2016 Aug 3.

Abstract

P2Y1 receptors mediate nerve mediated purinergic inhibitory junction potentials (IJP) and relaxations in the gastrointestinal (GI) tract in a wide range of species including rodents and humans. A new P2Y1 antagonist, with a non-nucleotide structure, BPTU, has recently been described using X-ray crystallography as the first allosteric G-protein-coupled receptor antagonist located entirely outside of the helical bundle. In this study, we tested its effect on purinergic responses in the gastrointestinal tract of rodents using electrophysiological and myographic techniques. BPTU concentration dependently inhibited purinergic inhibitory junction potentials and inhibition of spontaneous motility induced by electrical field stimulation in the colon of rats (EC50 = 0.3 μM) and mice (EC50 = 0.06 μM). Mechanical inhibitory responses were also concentration-dependently blocked in the stomach of both species. Compared to MRS2500, BPTU displays a lower potency. In the rat colon nicotine induced relaxation was also blocked by BPTU. BPTU also blocked the cessation of spontaneous contractility elicited by ADPβS and the P2Y1 agonist MRS2365. We conclude that BPTU is a novel antagonist with different structural and functional properties than nucleotidic antagonists that is able to block the P2Y1 receptor located at the neuromuscular junction of the GI tract.

摘要

P2Y1受体介导包括啮齿动物和人类在内的多种物种胃肠道中神经介导的嘌呤能抑制性接头电位(IJP)和舒张作用。一种具有非核苷酸结构的新型P2Y1拮抗剂BPTU,最近通过X射线晶体学被描述为首个完全位于螺旋束之外的变构G蛋白偶联受体拮抗剂。在本研究中,我们使用电生理和肌电图技术测试了其对啮齿动物胃肠道嘌呤能反应的影响。BPTU浓度依赖性地抑制嘌呤能抑制性接头电位,并抑制大鼠(EC50 = 0.3 μM)和小鼠(EC50 = 0.06 μM)结肠中电场刺激诱导的自发运动。两种物种胃中的机械性抑制反应也呈浓度依赖性被阻断。与MRS2500相比,BPTU的效力较低。在大鼠结肠中,尼古丁诱导的舒张也被BPTU阻断。BPTU还阻断了ADPβS和P2Y1激动剂MRS2365引起的自发收缩性停止。我们得出结论,BPTU是一种新型拮抗剂,其结构和功能特性与核苷酸拮抗剂不同,能够阻断位于胃肠道神经肌肉接头处的P2Y1受体。

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