Tu Huiyin, Deng Lunbin, Sun Qian, Yao Lei, Han Ji-Sheng, Wan You
Neuroscience Research Institute, Peking University, Key Laboratory of Neuroscience (Peking University), Ministry of Education, Beijing, Peoples Republic of China.
J Neurosci Res. 2004 Jun 1;76(5):713-22. doi: 10.1002/jnr.20109.
The large, medium-sized, and small neurons of the dorsal root ganglion (DRG) have different functions in the processing of various senses. Hyperpolarization-activated, cyclic nucleotide-gated channels (HCN) contribute greatly to neuronal excitability. In the present study, which used whole-cell patch clamp techniques and immunohistochemical staining methods, the electrophysiological properties of DRG neurons were systematically compared, and the roles of HCN-1, -2, and -4 were examined. The main results were as follows. 1) The large neurons had significantly higher V0.5 values (membrane potential at which the HCN channels were half-activated) and shorter time constants (tau) than small or medium-sized DRG neurons. However, large DRG neurons had higher Ih density (HCN neuron current). 2) HCN-1 was found predominantly, but not exclusively, in large and medium-sized DRG neurons; HCN-2 was found in all DRG neurons; and HCN-4 was poorly visualized in all DRG neurons. HCN-1 and HCN-2 were colocalized in large and medium-sized neurons with immunostaining of adjacent sections. In the dorsal horn of the spinal cord, HCN-1, HCN-2, and HCN-4 were all expressed in laminae I-IV, although HCN-1 was not detectable in lamina II. 3) Blockade of Ih current in DRG neurons caused a significant decrease in V0.5, resting membrane potential, and repetitive firing number of action potential and a significant increase in time of rising phase of action potential. These results suggest that the different HCN channels in the three types of DRG neurons might contribute to their differential electrophysiological properties.
背根神经节(DRG)的大、中、小神经元在各种感觉的处理中具有不同功能。超极化激活的环核苷酸门控通道(HCN)对神经元兴奋性有很大影响。在本研究中,采用全细胞膜片钳技术和免疫组织化学染色方法,系统比较了DRG神经元的电生理特性,并检测了HCN-1、-2和-4的作用。主要结果如下:1)大神经元的V0.5值(HCN通道半激活时的膜电位)显著高于小或中型DRG神经元,且时间常数(tau)更短。然而,大DRG神经元具有更高的Ih密度(HCN神经元电流)。2)HCN-1主要但并非仅在大、中型DRG神经元中发现;HCN-2在所有DRG神经元中均有发现;而HCN-4在所有DRG神经元中均难以观察到。通过相邻切片的免疫染色发现,HCN-1和HCN-2在大、中型神经元中共定位。在脊髓背角,HCN-1、HCN-2和HCN-4均在I-IV层表达,尽管在II层未检测到HCN-1。3)DRG神经元中Ih电流的阻断导致V0.5、静息膜电位和动作电位重复发放次数显著降低,动作电位上升期时间显著增加。这些结果表明,三种类型DRG神经元中不同的HCN通道可能导致它们不同的电生理特性。