Yamoah E N
Department of Physiology, Johns Hopkins School of Medicine, Baltimore, Maryland 21205, USA.
Biophys J. 1997 Jan;72(1):193-203. doi: 10.1016/S0006-3495(97)78658-2.
Apart from their primary function as balance sensors, Hermissenda hair cells are presynaptic neurons involved in the Ca(2+)-dependent neuronal plasticity in postsynaptic B photoreceptors that accompanies classical conditioning. With a view to beginning to understand presynaptic mechanisms of plasticity in the vestibulo-visual system, a locus for conditioning-induced neuronal plasticity, outward currents that may govern the excitability of hair cells were recorded by means of a whole-cell patch-clamp technique. Three K+ currents were characterized: a 4-aminopyridine-sensitive transient outward K+ current (IA), a tetraethyl ammonium-sensitive delayed rectifier K+ current (IK,V), and a Ca(2+)-activated K+ current (IK,Ca). IA activates and decays rapidly; the steady-state activation and inactivation curves of the current reveal a window current close to the apparent resting voltage of the hair cells, suggesting that the current is partially activated at rest. By modulating firing frequency and perhaps damping membrane oscillations, IA may regulate synaptic release at baseline. In contrast, IK,V and IK,Ca have slow onset and exhibit little or no inactivation. These two K+ currents may determine the duration of the repolarization phase of hair-cell action potentials and hence synaptic release via Ca2+ influx through voltage-gated Ca2+ channels. In addition, IK,Ca may be responsible for the afterhyperpolarization of hair cell membrane voltage following prolonged stimulation.
除了作为平衡传感器的主要功能外,艾氏海兔的毛细胞还是突触前神经元,参与伴随经典条件反射的突触后B光感受器中依赖钙的神经元可塑性。为了开始了解前庭视觉系统中可塑性的突触前机制,这是一个条件反射诱导的神经元可塑性位点,通过全细胞膜片钳技术记录了可能控制毛细胞兴奋性的外向电流。鉴定出三种钾电流:一种对4-氨基吡啶敏感的瞬时外向钾电流(IA)、一种对四乙铵敏感的延迟整流钾电流(IK,V)和一种钙激活钾电流(IK,Ca)。IA激活和衰减迅速;该电流的稳态激活和失活曲线显示在接近毛细胞明显静息电压处有一个窗口电流,表明该电流在静息时部分被激活。通过调节放电频率并可能抑制膜振荡,IA可能在基线时调节突触释放。相比之下,IK,V和IK,Ca起始缓慢,几乎没有失活或没有失活。这两种钾电流可能决定毛细胞动作电位复极化阶段的持续时间,从而通过电压门控钙通道的钙内流决定突触释放。此外,IK,Ca可能是长时间刺激后毛细胞膜电压超极化后电位的原因。