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首页> 外文期刊>Molecular pharmacology. >Kinetics of Conformational Changes Revealed by Voltage-Clamp Fluorometry Give Insight to Desensitization at ATP-Gated Human P2X1 Receptors.
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Kinetics of Conformational Changes Revealed by Voltage-Clamp Fluorometry Give Insight to Desensitization at ATP-Gated Human P2X1 Receptors.

机译:电压钳荧光法揭示的构象变化动力学提供了对ATP门控人P2X1受体脱敏的见解。

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摘要

ATP acts as an extracellular signaling molecule at cell-surface P2X receptors, mediating a variety of important physiologic and pathophysiologic roles. Homomeric P2X1 receptors open on binding ATP and then transition to an ATP-bound closed, desensitized state that requires an agonist-free washout period to recover. Voltage-clamp fluorometry was used to record ion channel activity and conformational changes simultaneously at defined positions in the extracellular loop of the human P2X1 receptor during not only agonist binding and desensitization but also during recovery. ATP evoked distinct conformational changes adjacent to the agonist binding pocket in response to channel activation and desensitization. The speed of recovery of the conformational change on agonist washout was state-dependent, with a faster time constant from the open (5 seconds) compared with the desensitized (75 seconds) form of the channel. The ability of ATP to evoke channel activity on washout after desensitization was not dependent on the degree of conformational rearrangement in the extracellular loop, and desensitization was faster from the partially recovered state. An intracellular mutation in the carboxyl terminus that slowed recovery of P2X1 receptor currents (7-fold less recovery at 30 seconds) had no effect on the time course of the extracellular conformational rearrangements. This study highlights that the intracellular portion of the receptor can regulate recovery and shows for the first time that this is by a mechanism independent of changes in the extracellular domain, suggesting the existence of a distinct desensitization gate in this novel class of ligand gated ion channels.
机译:ATP在细胞表面P2X受体处充当细胞外信号分子,介导各种重要的生理和病理生理作用。同源P2X1受体在结合ATP时打开,然后过渡到ATP结合的封闭脱敏状态,需要无激动剂清除期才能恢复。电压钳荧光法不仅在激动剂结合和脱敏过程中,而且在恢复过程中同时记录人P2X1受体胞外环中定义位置的离子通道活性和构象变化。 ATP响应通道激活和脱敏作用,在激动剂结合袋附近引起明显的构象变化。激动剂洗脱时构象变化的恢复速度取决于状态,与通道的脱敏形式(75秒)相比,从开放(5秒)开始的时间常数更快。脱敏后ATP激发洗脱时激活通道活性的能力不依赖于细胞外环中构象重排的程度,脱敏从部分恢复状态的速度更快。羧基末端的细胞内突变减慢了P2X1受体电流的恢复(30秒时恢复降低了7倍),对细胞外构象重排的时间没有影响。这项研究强调了受体的细胞内部分可以调节恢复,并首次表明这是一种独立于细胞外结构域变化的机制,这表明在这类新型的配体门控离子通道中存在明显的脱敏门。 。

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