Department of Functional Biology and Health Sciences, Faculty of Biology-CINBIO, University of Vigo, Vigo, Galicia, Spain.
Medway School of Pharmacy, University of Kent, Chatham Maritime, Kent, United Kingdom.
PLoS One. 2018 Jun 21;13(6):e0199282. doi: 10.1371/journal.pone.0199282. eCollection 2018.
Two-pore domain potassium channels (K2P) constitute major candidates for the regulation of background potassium currents in mammalian cells. Channels of the TREK subfamily are also well positioned to play an important role in sensory transduction due to their sensitivity to a large number of physiological and physical stimuli (pH, mechanical, temperature). Following our previous report describing the molecular expression of different K2P channels in the vagal sensory system, here we confirm that TREK channels are functionally expressed in neurons from the mouse nodose ganglion (mNG). Neurons were subdivided into three groups (A, Ah and C) based on their response to tetrodotoxin and capsaicin. Application of the TREK subfamily activator riluzole to isolated mNG neurons evoked a concentration-dependent outward current in the majority of cells from all the three subtypes studied. Riluzole increased membrane conductance and hyperpolarized the membrane potential by approximately 10 mV when applied to resting neurons. The resting potential was similar in all three groups, but C cells were clearly less excitable and showed smaller hyperpolarization-activated currents at -100 mV and smaller sustained currents at -30 mV. Our results indicate that the TREK subfamily of K2P channels might play an important role in the maintenance of the resting membrane potential in sensory neurons of the autonomic nervous system, suggesting its participation in the modulation of vagal reflexes.
双孔域钾通道(K2P)是调节哺乳动物细胞背景钾电流的主要候选者。TREK 亚家族的通道也由于其对大量生理和物理刺激(pH 值、机械、温度)的敏感性,而非常适合在感觉转导中发挥重要作用。在我们之前描述了不同 K2P 通道在迷走感觉系统中的分子表达的报告之后,在这里我们证实 TREK 通道在小鼠结状神经节(mNG)的神经元中具有功能性表达。神经元根据其对河豚毒素和辣椒素的反应分为三组(A、Ah 和 C)。将 TREK 亚家族激活剂 riluzole 应用于分离的 mNG 神经元,在研究的所有三种亚型的大多数细胞中诱发浓度依赖性外向电流。当应用于静息神经元时,riluzole 增加膜电导并将膜电位超极化约 10 mV。三组的静息电位相似,但 C 细胞明显兴奋性较低,在-100 mV 时的超极化激活电流较小,在-30 mV 时的持续电流较小。我们的结果表明,TREK 亚家族的 K2P 通道可能在自主神经系统感觉神经元的静息膜电位维持中发挥重要作用,表明其参与了迷走反射的调节。