ATP Binding and Channel Activation in P2X Receptors

Longmei Zhang, Sihao Deng, Zhiyuan Li
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引用次数: 1

Abstract

Purinergic P2X receptors are a family of nonselective cation channels gated by extracellular adenosine 5′-triphosphate. They are important drug targets primarily because of their involvement in neuropathic pain and inflammation. ATP binds allows Na + and Ca 2+ to pass through the channel pore, thus causing membrane depolarization and affecting various downstream Ca 2+ -dependent signaling processes. A concerted effort by investigators over the last two decades has culminated in significant advances in our understanding of where ATP binds and how ATP binding leads to channel opening and ion flux. The recent publication of the crystal structures for both the closed and open channel conformations of the zebrafish P2X4 receptor sheds new light on how P2X receptors work. In this review, we will attempt to present the existing functional data regarding ATP binding with the available crystal structure data and different experimental approaches that have been used to explore the ATP-binding sites.
P2X受体的ATP结合和通道激活
嘌呤能P2X受体是由细胞外5 ' -三磷酸腺苷门控的非选择性阳离子通道家族。它们是重要的药物靶点,主要是因为它们与神经性疼痛和炎症有关。ATP结合允许Na +和ca2 +通过通道孔,从而引起膜去极化并影响下游各种ca2 +依赖的信号传导过程。在过去的二十年中,研究人员的共同努力使我们对ATP结合的位置以及ATP结合如何导致通道开放和离子通量的理解取得了重大进展。最近发表的斑马鱼P2X4受体的闭合和开放通道构象的晶体结构为P2X受体的工作原理提供了新的思路。在这篇综述中,我们将尝试用现有的晶体结构数据和不同的实验方法来展示关于ATP结合的现有功能数据,这些数据已经用于探索ATP结合位点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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