Rodríguez-Molina Víctor, Patiño Javier, Vargas Yamili, Sánchez-Jaramillo Edith, Joseph-Bravo Patricia, Charli Jean-Louis
Departamento de Fisiología, Facultad de Medicina, Universidad Nacional Autónoma de México (UNAM), AP 70250, México, D.F. 04510, México; Facultad de Medicina, Universidad Autónoma del Estado de Morelos, Cuernavaca, Morelos, México.
Facultad de Medicina, Universidad Autónoma del Estado de Morelos, Cuernavaca, Morelos, México.
Brain Res. 2014 Jul 7;1571:1-11. doi: 10.1016/j.brainres.2014.05.015. Epub 2014 May 17.
Thyrotropin releasing hormone (TRH) is a neuropeptide with a wide neural distribution and a variety of functions. It modulates neuronal electrophysiological properties, including resting membrane potential, as well as excitatory postsynaptic potential and spike frequencies. We explored, with whole-cell patch clamp, TRH effect on action potential shape in pyramidal neurons of the sensorimotor cortex. TRH reduced spike and after hyperpolarization amplitudes, and increased spike half-width. The effect varied with dose, time and cortical layer. In layer V, 0.5µM of TRH induced a small increase in spike half-width, while 1 and 5µM induced a strong but transient change in spike half-width, and amplitude; after hyperpolarization amplitude was modified at 5µM of TRH. Cortical layers III and VI neurons responded intensely to 0.5µM TRH; layer II neurons response was small. The effect of 1µM TRH on action potential shape in layer V neurons was blocked by G-protein inhibition. Inhibition of the activity of the TRH-degrading enzyme pyroglutamyl peptidase II (PPII) reproduced the effect of TRH, with enhanced spike half-width. Many cortical PPII mRNA+ cells were VGLUT1 mRNA+, and some GAD mRNA+. These data show that TRH regulates action potential shape in pyramidal cortical neurons, and are consistent with the hypothesis that PPII controls its action in this region.
促甲状腺激素释放激素(TRH)是一种神经肽,具有广泛的神经分布和多种功能。它可调节神经元的电生理特性,包括静息膜电位、兴奋性突触后电位和动作电位频率。我们采用全细胞膜片钳技术,研究了TRH对感觉运动皮层锥体神经元动作电位形态的影响。TRH可降低动作电位幅度和超极化后电位幅度,并增加动作电位半宽度。这种作用随剂量、时间和皮层层位的不同而变化。在第V层,0.5μM的TRH可使动作电位半宽度略有增加,而1μM和5μM的TRH可使动作电位半宽度和幅度发生强烈但短暂的变化;5μM的TRH可改变超极化后电位幅度。皮层第III层和第VI层神经元对0.5μM的TRH反应强烈;第II层神经元反应较小。1μM的TRH对第V层神经元动作电位形态的作用可被G蛋白抑制所阻断。抑制TRH降解酶焦谷氨酸肽酶II(PPII)的活性可重现TRH的作用,使动作电位半宽度增加。许多皮层PPII mRNA+细胞为VGLUT1 mRNA+,部分为GAD mRNA+。这些数据表明,TRH可调节皮层锥体神经元的动作电位形态,这与PPII在该区域控制其作用的假说一致。