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Alexa-647-ATP 作为研究 P2X 受体配体结合和脱敏的有力工具的验证。

Validation of Alexa-647-ATP as a powerful tool to study P2X receptor ligand binding and desensitization.

机构信息

Department of Biophysical Chemistry, Max-Planck-Institute of Biophysics, Max-von-Laue-Strasse 3, 60438 Frankfurt am Main, Germany.

出版信息

Biochem Biophys Res Commun. 2013 Aug 23;438(2):295-300. doi: 10.1016/j.bbrc.2013.07.058. Epub 2013 Jul 26.

Abstract

Ion channel opening and desensitization is a fundamental process in neurotransmission. The ATP-gated P2X1 receptor (P2X1R) shows rapid and long-lasting desensitization upon agonist binding. This makes the electrophysiological investigation of its desensitization process, agonist unbinding, and recovery from desensitization a challenging task. Here, we show that the fluorescent agonist Alexa-647-ATP is a potent agonist at the P2X1R and a versatile tool to directly visualize agonist binding and unbinding. We demonstrate that the long-lasting desensitization of the P2X1R is due to both slow unbinding of agonist from the desensitized receptor and agonist mediated receptor internalization. Furthermore, the unbinding of the agonist Alexa-647-ATP from the desensitized receptor is accelerated in the continuous presence of competitive ligand. Modeling of our data indicates that three agonist molecules are required to drive the receptor into desensitization. Direct visualization of ligand unbinding from the desensitized receptor demonstrates the cooperativity of this process.

摘要

离子通道的开放和脱敏是神经递质传递的一个基本过程。三磷酸腺苷门控 P2X1 受体(P2X1R)在与激动剂结合后表现出快速而持久的脱敏。这使得对其脱敏过程、激动剂释放和脱敏恢复的电生理研究成为一项具有挑战性的任务。在这里,我们表明荧光激动剂 Alexa-647-ATP 是 P2X1R 的一种有效激动剂,也是直接可视化激动剂结合和解离的多功能工具。我们证明,P2X1R 的持久脱敏是由于脱敏受体上激动剂的缓慢释放以及激动剂介导的受体内化。此外,在连续存在竞争性配体的情况下,从脱敏受体上释放激动剂 Alexa-647-ATP 的速度会加快。对我们数据的建模表明,需要三个激动剂分子来驱动受体进入脱敏状态。直接观察配体从脱敏受体上的释放表明了这一过程的协同性。

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