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A Putative Extracellular Salt Bridge at the Subunit Interface Contributes to the Ion Channel Function of the ATP-gated P2X2 Receptor

机译:在亚基界面上的假定的细胞外盐桥有助于ATP门控的P2X2受体的离子通道功能。

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摘要

The recent crystal structure of the ATP-gated P2X4 receptor revealed a static view of its architecture, but the molecular mechanisms underlying the P2X channels activation are still unknown. By using a P2X2 model based on the x-ray structure, we sought salt bridges formed between charged residues located in a region that directly connects putative ATP-binding sites to the ion channel. To reveal their significance for ion channel activation, we made systematic charge exchanges and measured the effects on ATP sensitivity. We found that charge reversals at the interfacial residues Glu63 and Arg274 produced gain-of-function phenotypes that were cancelled upon paired charge swapping. These results suggest that a putative intersubunit salt bridge formed between Glu63 and Arg274 contributes to the ion channel function. Engineered cysteines E63C and R274C formed redox-dependent cross-links in the absence of ATP. By contrast, the presence of ATP reduced the rate of disulfide bond formation, indicating that ATP binding might trigger relative movement of adjacent subunits at the level of Glu63 and Arg274, allowing the transmembrane helices to open the channel.
机译:ATP门控的P2X4受体的最新晶体结构揭示了其结构的静态视图,但是P2X通道激活的潜在分子机制仍然未知。通过使用基于X射线结构的P2X2模型,我们寻求了位于位于将假定的ATP结合位点直接连接到离子通道的区域中的带电残基之间形成的盐桥。为了揭示它们对于离子通道激活的重要性,我们进行了系统的电荷交换并测量了其对ATP敏感性的影响。我们发现界面残基Glu 63 和Arg 274 上的电荷反转产生了功能增益表型,该表型在配对电荷交换后被抵消。这些结果表明,在Glu 63 和Arg 274 之间形成的推定的亚基间盐桥有助于离子通道功能。工程化的半胱氨酸E63C和R274C在没有ATP的情况下形成了依赖于氧化还原的交联。相比之下,ATP的存在降低了二硫键形成的速率,这表明ATP的结合可能触发邻近亚基在Glu 63 和Arg 274 的相对运动,允许跨膜螺旋打开通道。

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