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阴离子对人P2X7受体的影响。

The effect of anions on the human P2X7 receptor.

作者信息

Kubick Christoph, Schmalzing Günther, Markwardt Fritz

机构信息

Julius-Bernstein-Institute for Physiology, Martin-Luther-University Halle, Magdeburger Straße 6, D-06097 Halle/Saale, Germany.

出版信息

Biochim Biophys Acta. 2011 Dec;1808(12):2913-22. doi: 10.1016/j.bbamem.2011.08.017. Epub 2011 Aug 19.

Abstract

P2X7 receptors (P2X7Rs) are nonselective cation channels that are opened by the binding of extracellular ATP and are involved in the modulation of epithelial secretion, inflammation and nociception. Here, we investigated the effect of extracellular anions on channel gating and permeation of human P2X7Rs (hP2X7Rs) expressed in Xenopus laevis oocytes. Two-microelectrode voltage-clamp recordings showed that ATP-induced hP2X7R-mediated currents increased when extracellular chloride was substituted by the organic anions glutamate or aspartate and decreased when chloride was replaced by the inorganic anions nitrate, sulfate or iodide. ATP concentration-response comparisons revealed that substitution of chloride by glutamate decreased agonist efficacy, while substitution by iodide increased agonist efficacy at high ATP concentrations. Meanwhile, the ATP potency remained unchanged. Activation of the hP2X7R at low ATP concentrations via the high-affinity ATP effector site was not affected by the replacement of chloride by glutamate or iodide. To analyze the anion effect on the hP2X7R at the single-molecule level, we performed single-channel current measurements using the patch-clamp technique in the outside-out configuration. Chloride substitution did not affect the single-channel conductance, but the probability that the P2X7R channel was open increased when chloride was replaced by glutamate and decreased when chloride was replaced by iodide. This effect was due to an influence of the anions on the mean closed times of the hP2X7R channel. We conclude that hP2X7R channels are not anion-permeable in physiological Na+-based media and that external anions allosterically affect ion channel opening in the fully ATP4-liganded P2X7R through an extracellular anion binding site.

摘要

P2X7受体(P2X7Rs)是一种非选择性阳离子通道,可通过细胞外ATP的结合而开启,并参与上皮分泌、炎症和伤害感受的调节。在此,我们研究了细胞外阴离子对非洲爪蟾卵母细胞中表达的人P2X7受体(hP2X7Rs)通道门控和通透的影响。双电极电压钳记录显示,当细胞外氯离子被有机阴离子谷氨酸或天冬氨酸取代时,ATP诱导的hP2X7R介导的电流增加;而当氯离子被无机阴离子硝酸盐、硫酸盐或碘化物取代时,电流则降低。ATP浓度-反应比较表明,用谷氨酸取代氯离子会降低激动剂效力,而在高ATP浓度下用碘化物取代则会增加激动剂效力。同时,ATP的效价保持不变。通过高亲和力ATP效应位点在低ATP浓度下激活hP2X7R不受谷氨酸或碘化物取代氯离子的影响。为了在单分子水平分析阴离子对hP2X7R的影响,我们采用膜片钳技术在外侧向外模式下进行了单通道电流测量。氯离子取代不影响单通道电导,但当氯离子被谷氨酸取代时,P2X7R通道开放的概率增加,而被碘化物取代时则降低。这种效应是由于阴离子对hP2X7R通道平均关闭时间的影响。我们得出结论,在基于生理Na+的介质中hP2X7R通道对阴离子不通透,并且外部阴离子通过细胞外阴离子结合位点对完全由ATP4结合的P2X7R中的离子通道开放产生变构影响。

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