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C. elegans AWA Olfactory Neurons Fire Calcium-Mediated All-or-None Action Potentials

机译:C. Elegans AWA嗅觉神经元火钙介导的全部或无行动潜力

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摘要

Neurons in Caenorhabditis elegans and other nematodes have been thought to lack classical action potentials. Unexpectedly, we observe membrane potential spikes with defining characteristics of action potentials in C. elegans AWA olfactory neurons recorded under current-clamp conditions. Ion substitution experiments, mutant analysis, pharmacology, and modeling indicate thatAWA fires calcium spikes, which are initiated by EGL-19 voltage-gated CaV1 calcium channels and terminated by SHK-1 Shaker-type potassium channels. AWA action potentials result in characteristic signals in calcium imaging experiments. These calcium signals are also observed when intact animals are exposed to odors, suggesting that natural odor stimuli induce AWA spiking. The stimuli that elicit action potentials match AWA's specialized function in climbing odor gradients. Our results provide evidence that C. elegans neurons can encode information through regenerative all-or-none action potentials, expand the computational repertoire of its nervous system, and inform future modeling of its neural coding and network dynamics.
机译:被认为是Caenorhabditis elegis和其他线虫的神经元缺乏古典行动潜力。意外地,我们观察膜潜在尖峰,定义了在电流 - 钳位条件下记录的C.秀丽隐杆菌的动作电位特征。离子替代实验,突变分析,药理学和建模表明,由EGL-​​19电压门控Cav1钙通道发起并由SHK-1摇床型钾通道终止发起的钙尖峰。 AWA动作电位导致钙成像实验中的特征信号。当完整的动物暴露于气味时,也观察到这些钙信号,表明天然气味刺激诱导AWA尖刺。引发行动潜力匹配AWA在攀爬气味梯度方面的专门函数的刺激。我们的结果提供了C. elegans神经元可以通过再生全部或无行动潜力来编码信息,扩展其神经系统的计算曲目,并告知未来的内部编码和网络动态的建模。

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  • 来源
    《Cell》 |2018年第1期|共31页
  • 作者单位

    Rockefeller Univ Lulu &

    Anthony Wang Lab Neural Circuits &

    Behav New York NY 10065 USA;

    Rockefeller Univ Lulu &

    Anthony Wang Lab Neural Circuits &

    Behav New York NY 10065 USA;

    Rockefeller Univ Lulu &

    Anthony Wang Lab Neural Circuits &

    Behav New York NY 10065 USA;

    Rockefeller Univ Lulu &

    Anthony Wang Lab Neural Circuits &

    Behav New York NY 10065 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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