Martini Marta, Canella Rita, Fesce Riccardo, Rossi Maria Lisa
Department of Biology and Evolution, Section of Physiology and Biophysics and Centre of Neuroscience, Ferrara University, 44100 Ferrara, Italy.
Pflugers Arch. 2009 Apr;457(6):1327-42. doi: 10.1007/s00424-008-0598-y. Epub 2008 Oct 21.
Potassium-current inactivation and recovery kinetics are pivotal in sustaining dynamic processing of time-varying sensory signals in hair cells. We report a detailed analysis of K(+)-currents in isolated hair cells from the frog crista ampullaris. The single components were dissected using a novel procedure based on their differential kinetic properties: The fast IA component exhibited two processes of inactivation removal; the persistent I (KD) component (I (KV) + I (KCa)), unexpectedly displayed partial inactivation, removed by negative potentials with particularly slow, delayed kinetics. The physiological relevance of these observations was investigated by imposing sinusoidal membrane potential changes to mimic receptor response to hair bundle deflection. The excitatory phase elicited extra-currents (hysteresis) only if the off phase went sufficiently negative to remove IA inactivation. Native, resting hair cells are depolarised by receptor current; thus, voltage continuously modulates I(KD), whereas IA only transiently ensues when the receptor current vanishes (zero-current potential approximately -70 mV) and polarisation removes IA inactivation.
钾电流的失活和恢复动力学对于维持毛细胞中时变感觉信号的动态处理至关重要。我们报告了对来自青蛙壶腹嵴的分离毛细胞中钾电流的详细分析。利用基于其不同动力学特性的新方法剖析了单个成分:快速IA成分表现出两个失活去除过程;持续性I(KD)成分(I(KV)+I(KCa))意外地表现出部分失活,可通过负电位以特别缓慢、延迟的动力学去除。通过施加正弦膜电位变化以模拟受体对毛束偏转的反应,研究了这些观察结果的生理相关性。仅当关闭相足够负以去除IA失活时,兴奋相才会引发额外电流(滞后)。天然的静息毛细胞因受体电流而 depolarised;因此,电压持续调节I(KD),而IA仅在受体电流消失(零电流电位约为 -70 mV)且极化去除IA失活时短暂出现。 (注:“depolarised”此处可能有误,推测可能是“depolarized”,意为“去极化”)