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首页> 外文期刊>The Journal of general physiology >Functional properties and toxin pharmacology of a dorsal root ganglion sodium channel viewed through its voltage sensors
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Functional properties and toxin pharmacology of a dorsal root ganglion sodium channel viewed through its voltage sensors

机译:通过其电压传感器查看背根神经节钠通道的功能特性和毒素药理学

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The voltage-activated sodium (Nav) channel Nav1.9 is expressed in dorsal root ganglion (DRG) neurons where it is believed to play an important role in nociception. Progress in revealing the functional properties and pharmacological sensitivities of this non-canonical Nav channel has been slow because attempts to express this channel in a heterologous expression system have been unsuccessful. Here, we use a protein engineering approach to dissect the contributions of the four Nav1.9 voltage sensors to channel function and pharmacology. We define individual S3b–S4 paddle motifs within each voltage sensor, and show that they can sense changes in membrane voltage and drive voltage sensor activation when transplanted into voltage-activated potassium channels. We also find that the paddle motifs in Nav1.9 are targeted by animal toxins, and that these toxins alter Nav1.9-mediated currents in DRG neurons. Our results demonstrate that slowly activating and inactivating Nav1.9 channels have functional and pharmacological properties in common with canonical Nav channels, but also show distinctive pharmacological sensitivities that can potentially be exploited for developing novel treatments for pain.
机译:电压激活钠(Nav)通道Nav1.9在背根神经节(DRG)神经元中表达,据信它在伤害感受中起重要作用。揭示此非规范Nav通道的功能特性和药理敏感性的进展一直很缓慢,因为尝试在异源表达系统中表达该通道的尝试并不成功。在这里,我们使用蛋白质工程方法来剖析四个Nav1.9电压传感器对通道功能和药理学的贡献。我们在每个电压传感器中定义了单独的S3b–S4桨叶图案,并表明当它们移植到电压激活的钾离子通道中时,它们可以感知膜电压的变化并驱动电压传感器的激活。我们还发现,Nav1.9中的桨基序被动物毒素作为目标,并且这些毒素改变了DRG神经元中Nav1.9介导的电流。我们的研究结果表明,缓慢激活和失活的Nav1.9通道具有与规范Nav通道相同的功能和药理特性,而且还显示出独特的药理敏感性,可以潜在地用于开发新型的疼痛治疗方法。

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