首页> 外文期刊>Neuron >DEG/ENaC but not TRP channels are the major mechanoelectrical transduction channels in a C. elegans nociceptor.
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DEG/ENaC but not TRP channels are the major mechanoelectrical transduction channels in a C. elegans nociceptor.

机译:DEG / ENaC而不是TRP通道是秀丽隐杆线虫伤害感受器中的主要机电转换通道。

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Many nociceptors detect mechanical cues, but the ion channels responsible for mechanotransduction in these sensory neurons remain obscure. Using in vivo recordings and genetic dissection, we identified the DEG/ENaC protein, DEG-1, as the major mechanotransduction channel in ASH, a polymodal nociceptor in Caenorhabditis elegans. But DEG-1 is not the only mechanotransduction channel in ASH: loss of deg-1 revealed a minor current whose properties differ from those expected of DEG/ENaC channels. This current was independent of two TRPV channels expressed in ASH. Although loss of these TRPV channels inhibits behavioral responses to noxious stimuli, we found that both mechanoreceptor currents and potentials were essentially wild-type in TRPV mutants. We propose that ASH nociceptors rely on two genetically distinct mechanotransduction channels and that TRPV channels contribute to encoding and transmitting information. Because mammalian and insect nociceptors also coexpress DEG/ENaCs and TRPVs, the cellular functions elaborated here for these ion channels may be conserved.
机译:许多伤害感受器检测到机械线索,但是负责这些感觉神经元机械转导的离子通道仍然不清楚。使用体内记录和遗传解剖,我们确定DEG / ENaC蛋白DEG-1是ASH(秀丽隐杆线虫中的一种多峰伤害感受器)中ASH的主要机械转导通道。但是DEG-1并不是ASH中唯一的机械传导通道:deg-​​1的损失显示出较小的电流,其特性与DEG / ENaC通道的特性不同。该电流与ASH中表示的两个TRPV通道无关。尽管这些TRPV通道的丢失会抑制对有害刺激的行为反应,但我们发现机械受体电流和电位在TRPV突变体中基本上都是野生型的。我们建议,ASH伤害感受器依赖于两个遗传学上不同的机械转导通道,TRPV通道有助于编码和传输信息。因为哺乳动物和昆虫伤害感受器也共表达DEG / ENaC和TRPV,所以此处保留的这些离子通道的细胞功能可能得以保留。

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