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内向整流钾电导可加速视网膜水平细胞的超极化反应。

Inwardly rectifying potassium conductance can accelerate the hyperpolarizing response in retinal horizontal cells.

作者信息

Dong C J, Werblin F S

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720, USA.

出版信息

J Neurophysiol. 1995 Dec;74(6):2258-65. doi: 10.1152/jn.1995.74.6.2258.

Abstract
  1. We studied the activation properties and assessed the functional role of the inwardly rectifying potassium conductance (GK.IR) in acutely isolated retinal horizontal cells (HCs) with the use of the whole cell patch-clamp technique. 2. The potassium current mediated by GK.IR was isolated by the use of Cs+ or Ba2+ ions. This current was outward, although relatively small in amplitude, in the voltage range between the potassium equilibrium potential (EK) and 50-60 mV more positive. The current reversed its polarity at EK and became inward at potentials more negative than EK. When HCs were bathed in normal Ringer (EK = -90 mV), GK.IR began to active at about -30 mV, was 30-40% activated at the resting potential (-70 to -80 mV) and about fully activated at -130 mV. Thus a significant portion of the activation range of GK.IR overlaps the HC physiological response range (-20 to -80 mV). 3. GK.IR has a dramatic effect on the kinetics of membrane polarization. Blocking GK.IR with Cs+ or Ba2+ significantly slowed the rate of membrane hyperpolarization in response to a hyperpolarizing current ramp over the HC physiological response range. Blocking GK.IR also dramatically slowed the onset rate of a simulated light response generated by a brief break in a sustained glutamate puff. 4. These results suggest that GK.IR can enhance the temporal resolution of the HC by accelerating the onset rate of the hyperpolarizing light response.
摘要
  1. 我们运用全细胞膜片钳技术,研究了急性分离的视网膜水平细胞(HCs)中内向整流钾电导(GK.IR)的激活特性,并评估了其功能作用。2. 通过使用Cs⁺或Ba²⁺离子分离出由GK.IR介导的钾电流。在钾平衡电位(EK)与正50 - 60 mV之间的电压范围内,该电流为外向电流,尽管幅度相对较小。电流在EK处反转其极性,在比EK更负的电位时变为内向电流。当HCs浸浴在正常林格液(EK = -90 mV)中时,GK.IR在约-30 mV时开始激活,在静息电位(-70至-80 mV)时激活30 - 40%,在-130 mV时约完全激活。因此,GK.IR激活范围的很大一部分与HC生理反应范围(-20至-80 mV)重叠。3. GK.IR对膜极化动力学有显著影响。用Cs⁺或Ba²⁺阻断GK.IR会显著减慢在HC生理反应范围内对超极化电流斜坡的膜超极化速率。阻断GK.IR也会显著减慢由持续谷氨酸微喷射短暂中断产生的模拟光反应的起始速率。4. 这些结果表明,GK.IR可通过加速超极化光反应的起始速率来提高HC的时间分辨率。

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