Department of Functional Biology, Faculty of Biology, University of Vigo, Campus Lagoas-Marcosende, 36310, Vigo, Spain.
J Mol Neurosci. 2012 Sep;48(1):86-96. doi: 10.1007/s12031-012-9780-y. Epub 2012 Apr 29.
Several types of neurons within the central and peripheral somatic nervous system express two-pore-domain potassium (K2P) channels, providing them with resting potassium conductances. We demonstrate that these channels are also expressed in the autonomic nervous system where they might be important modulators of neuronal excitability. We observed strong mRNA expression of members of the TRESK and TREK subfamilies in both the mouse superior cervical ganglion (mSCG) and the mouse nodose ganglion (mNG). Motor mSCG neurons strongly expressed mRNA transcripts for TRESK and TREK-2 subunits, whereas TASK-1 and TASK-2 subunits were only moderately expressed, with only few or very few transcripts for TREK-1 and TRAAK (TRESK ≈ TREK-2 > TASK-2 ≈ TASK-1 > TREK-1 > TRAAK). Similarly, the TRESK and TREK-1 subunits were the most strongly expressed in sensorial mNG neurons, while TASK-1 and TASK-2 mRNAs were moderately expressed, and fewer TREK-2 and TRAAK transcripts were detected (TRESK ≈ TREK-1 > TASK-1 ≈ TASK-2 > TREK-2 > TRAAK). Moreover, cell-attached single-channel recordings showed a major contribution of TRESK and TREK-1 channels in mNG. As the level of TRESK mRNA expression was not statistically different between the ganglia analysed, the distinct expression of TREK-1 and TREK-2 subunits was the main difference observed between these structures. Our results strongly suggest that TRESK and TREK channels are important modulators of the sensorial and motor information flowing through the autonomic nervous system, probably exerting a strong influence on vagal reflexes.
中枢和外周躯体神经系统中的几种神经元表达双孔域钾 (K2P) 通道,为其提供静息钾电导。我们证明,这些通道也存在于自主神经系统中,它们可能是神经元兴奋性的重要调节剂。我们在小鼠颈上神经节 (mSCG) 和小鼠结状神经节 (mNG) 中均观察到 TRESK 和 TREK 亚家族成员的强烈 mRNA 表达。运动性 mSCG 神经元强烈表达 TRESK 和 TREK-2 亚基的 mRNA 转录本,而 TASK-1 和 TASK-2 亚基仅中度表达,TREK-1 和 TRAAK 的转录本很少或非常少 (TRESK ≈ TREK-2 > TASK-2 ≈ TASK-1 > TREK-1 > TRAAK)。同样,TRESK 和 TREK-1 亚基在感觉性 mNG 神经元中表达最强,而 TASK-1 和 TASK-2 mRNA 中度表达,检测到较少的 TREK-2 和 TRAAK 转录本 (TRESK ≈ TREK-1 > TASK-1 ≈ TASK-2 > TREK-2 > TRAAK)。此外,细胞附着的单通道记录显示 TRESK 和 TREK-1 通道在 mNG 中主要贡献。由于分析的神经节之间 TRESK mRNA 表达水平没有统计学差异,因此观察到的 TREK-1 和 TREK-2 亚基的不同表达是这些结构之间的主要区别。我们的结果强烈表明,TRESK 和 TREK 通道是自主神经系统中感觉和运动信息流动的重要调节剂,可能对迷走反射产生强烈影响。