Foehring R C, Mermelstein P G, Song W J, Ulrich S, Surmeier D J
Department of Anatomy and Neurobiology, University of Tennessee, Memphis, Tennessee 38163, USA.
J Neurophysiol. 2000 Nov;84(5):2225-36. doi: 10.1152/jn.2000.84.5.2225.
Whole cell recordings from acutely dissociated neocortical pyramidal neurons and striatal medium spiny neurons exhibited a calcium-channel current resistant to known blockers of L-, N-, and P/Q-type Ca(2+) channels. These R-type currents were characterized as high-voltage-activated (HVA) by their rapid deactivation kinetics, half-activation and half-inactivation voltages, and sensitivity to depolarized holding potentials. In both cell types, the R-type current activated at potentials relatively negative to other HVA currents in the same cell type and inactivated rapidly compared with the other HVA currents. The main difference between cell types was that R-type currents in neocortical pyramidal neurons inactivated at more negative potentials than R-type currents in medium spiny neurons. Ni(2+) sensitivity was not diagnostic for R-type currents in either cell type. Single-cell RT-PCR revealed that both cell types expressed the alpha1E mRNA, consistent with this subunit being associated with the R-type current.
对急性分离的新皮层锥体神经元和纹状体中等棘状神经元进行的全细胞记录显示,存在一种对已知的L型、N型和P/Q型Ca(2+)通道阻滞剂有抗性的钙通道电流。这些R型电流通过其快速失活动力学、半激活和半失活电压以及对去极化钳制电位的敏感性,被表征为高电压激活(HVA)电流。在这两种细胞类型中,R型电流在相对于同一细胞类型中的其他HVA电流而言相对负的电位下激活,并且与其他HVA电流相比失活迅速。细胞类型之间的主要差异在于,新皮层锥体神经元中的R型电流比中等棘状神经元中的R型电流在更负的电位下失活。Ni(2+)敏感性在这两种细胞类型中都不能作为R型电流的诊断依据。单细胞逆转录聚合酶链反应显示,这两种细胞类型均表达α1E mRNA,这与该亚基与R型电流相关一致。