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9-菲酚调节药用水蛭兴奋性运动神经元的抑制后反弹和超极化后电位。

9-Phenanthrol modulates postinhibitory rebound and afterhyperpolarizing potentials in an excitatory motor neuron of the medicinal leech.

作者信息

Angstadt James D, Giordano Joshua R, Goncalves Alexander J

机构信息

Department of Biology, Siena College, Loudonville, NY, USA.

NYIT College of Osteopathic Medicine, Old Westbury, NY, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2017 Aug;203(8):613-633. doi: 10.1007/s00359-017-1178-4. Epub 2017 May 11.

Abstract

Postinhibitory rebound (PIR) responses in leech dorsal excitatory motor neurons (cell DE-3) are eliminated by Ca channel blockers but also exhibit a strong dependence on extracellular Na. These features could be explained by a voltage-gated Ca current acting in concert with a Ca-activated nonspecific current (I). In vertebrates, I is associated with TRPM4 channels which are blocked selectively by 9-phenanthrol. Here, we show that 9-phenanthrol selectively inhibits a late phase of PIR and simultaneously enhances afterhyperpolarizing potentials (AHPs). Bath application of NNC 55-0396 or Cd combined with ion substitution experiments indicate that a low-voltage-activated Ca current plays a key role in generating PIR and that Ca influx through low- or high-voltage-activated Ca channels can trigger AHPs via activation of a Ca-dependent K current. We also demonstrate modulation of rebound responses by other I blockers such as gadolinium and flufenamic acid, as well as the calmodulin antagonist W-7. We discuss how these results provide additional insights into the specific types of ionic currents underlying rebound responses of motor neuron DE-3 in the medicinal leech.

摘要

水蛭背侧兴奋性运动神经元(细胞DE-3)中的抑制后反弹(PIR)反应可被钙通道阻滞剂消除,但也表现出对细胞外钠的强烈依赖性。这些特征可以通过与钙激活非特异性电流(I)协同作用的电压门控钙电流来解释。在脊椎动物中,I与TRPM4通道相关,TRPM4通道可被9-菲咯啉选择性阻断。在这里,我们表明9-菲咯啉选择性抑制PIR的晚期阶段,同时增强超极化后电位(AHPs)。浴用NNC 55-0396或镉并结合离子置换实验表明,低电压激活钙电流在产生PIR中起关键作用,并且通过低电压或高电压激活钙通道的钙内流可通过激活钙依赖性钾电流触发AHPs。我们还证明了其他I阻滞剂如钆、氟芬那酸以及钙调蛋白拮抗剂W-7对反弹反应的调节作用。我们讨论了这些结果如何为药用水蛭中运动神经元DE-3反弹反应背后的特定离子电流类型提供更多见解。

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