Lee Christian R, Tepper James M
Center for Molecular and Behavioral Neuroscience, Rutgers, The State University of New Jersey, Newark, New Jersey 07102, USA.
J Neurosci. 2007 Jun 13;27(24):6531-41. doi: 10.1523/JNEUROSCI.1678-07.2007.
Plateau potentials can be elicited in nigral GABAergic neurons by injection of 500 ms depolarizing current pulses from hyperpolarized holding potentials in whole-cell recordings in vitro. In approximately one-third of these neurons, plateau potentials were observed under control conditions and could be elicited in the remaining neurons after blocking potassium conductances. Application of the L-type calcium channel agonist Bay K 8644 or activation of NMDA receptors enhanced plateau potentials observed under control conditions and caused a plateau to be elicited in neurons not exhibiting it previously. The plateau potential was abolished in calcium-free buffer, as well as by nickel or cadmium. The L-type calcium channel blockers nimodipine and nifedipine abolished the plateau potential observed under control conditions but did not affect plateaus unmasked by tetraethylammonium. Plateau potentials observed under control conditions as well as those observed in the presence of Bay K 8644, NMDA, or tetraethylammonium were abolished in low-sodium buffer and by the calcium-activated nonselective cation conductance blocker flufenamic acid. These data suggest that nigral plateau potentials are mediated by a calcium-activated nonselective cation conductance (I(CAN)) that is activated by calcium entry predominantly through L-type calcium channels. In many nigral neurons, I(CAN) is masked by tetraethylammonium-sensitive potassium conductances, but plateaus can be evoked after increasing calcium conductances. The I(CAN)-mediated plateau potential in nigral GABAergic neurons likely affects the way these neurons integrate input and may represent a mechanism contributing to the rhythmic firing of these neurons seen in pathological conditions such as Parkinson's disease.
在体外全细胞记录中,通过从超极化钳制电位注入500毫秒的去极化电流脉冲,可在黑质GABA能神经元中诱发平台电位。在这些神经元中,约三分之一在对照条件下可观察到平台电位,其余神经元在阻断钾电导后也可诱发。应用L型钙通道激动剂Bay K 8644或激活NMDA受体可增强对照条件下观察到的平台电位,并使先前未表现出平台电位的神经元诱发平台电位。平台电位在无钙缓冲液中以及在镍或镉存在时被消除。L型钙通道阻滞剂尼莫地平和硝苯地平可消除对照条件下观察到的平台电位,但不影响被四乙铵暴露的平台电位。对照条件下观察到的平台电位以及在Bay K 8644、NMDA或四乙铵存在时观察到的平台电位,在低钠缓冲液中以及被钙激活的非选择性阳离子电导阻滞剂氟芬那酸作用下被消除。这些数据表明,黑质平台电位由钙激活的非选择性阳离子电导(I(CAN))介导,该电导主要通过L型钙通道进入的钙激活。在许多黑质神经元中,I(CAN)被对四乙铵敏感的钾电导掩盖,但增加钙电导后可诱发平台电位。黑质GABA能神经元中由I(CAN)介导的平台电位可能影响这些神经元整合输入的方式,并可能代表一种机制,有助于在帕金森病等病理状态下观察到的这些神经元的节律性放电。