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成年大鼠背根神经节中小神经元钠钾泵电流的特性

Properties of the Na+/K+ pump current in small neurons from adult rat dorsal root ganglia.

作者信息

Hamada Kanako, Matsuura Hiroshi, Sanada Mitsuru, Toyoda Futoshi, Omatsu-Kanbe Mariko, Kashiwagi Atsunori, Yasuda Hitoshi

机构信息

Department of Medicine, Shiga University of Medical Science, Otsu, Shiga 520-2192, Japan.

出版信息

Br J Pharmacol. 2003 Apr;138(8):1517-27. doi: 10.1038/sj.bjp.0705170.

Abstract

1 The present investigation was undertaken to characterize the Na(+)/K(+) pump current in small (<or=25 microm in soma diameter) dorsal root ganglion (DRG) neurons isolated from lumbar L4-6 segments of adult rats. 2. The Na(+)/K(+) pump current was identified as an ouabain-sensitive current during square voltage steps to membrane potentials between +40 and -120 mV, using the whole-cell patch-clamp technique in which Ca(2+) and K(+) channel currents and Na(+)/Ca(2+) exchange currents were minimized. The Na(+)/K(+) pump current was practically time-independent over the entire voltage range examined and exhibited a voltage-dependence; its current - voltage (I-V) relationship displayed a positive slope at potentials between -120 and 0 mV but nearly plateau levels at positive membrane potentials. 3. The concentration-dependent block of Na(+)/K(+) pump current (activated by 30 mM pipette Na(+)) by ouabain at concentrations between 0.1 microM and 5 mM was biphasic and was well described using a two-binding site model with dissociation constants for high- and low-affinity binding sites of 0.20 and 140.1 microM, respectively. The relative amplitude of the Na(+)/K(+) pump current produced by low- and high-affinity sites (probably alpha1beta1 and alpha3beta1 isozymes, respectively) was estimated to be 13 : 1 in the presence of 30 mM Na(+) in the pipette solution. 4. Additionally, the activation of Na(+)/K(+) pump current by pipette Na(+) at concentrations ranging from 5 to 100 mM also exhibited a biphasic concentration dependence which can be reasonably well fitted by assuming the existence of two isozymes having high and low affinities for Na(+) (6.7 and 67.6 mM, respectively). 5. Thus, the present investigation provides functional evidence to suggest that the Na(+)/K(+) ATPase comprises two functionally distinct isozymes as expected for alpha1beta1 and alpha3beta1 in rat small DRG neurons.

摘要
  1. 本研究旨在对从成年大鼠腰4 - 6节段分离出的小型(胞体直径≤25微米)背根神经节(DRG)神经元中的钠钾泵电流进行特性描述。2. 使用全细胞膜片钳技术,在将膜电位从 +40 毫伏到 -120 毫伏的方波电压阶跃期间,钠钾泵电流被确定为哇巴因敏感电流,该技术可使钙通道电流、钾通道电流和钠钙交换电流降至最低。钠钾泵电流在整个检测电压范围内实际上与时间无关,并表现出电压依赖性;其电流 - 电压(I - V)关系在 -120 毫伏至 0 毫伏的电位之间呈正斜率,但在正膜电位时接近平台水平。3. 哇巴因在 0.1 微摩尔至 5 毫摩尔浓度范围内对钠钾泵电流(由 30 毫摩尔移液管钠激活)的浓度依赖性阻断是双相的,并且使用双结合位点模型能很好地描述,该模型中高亲和力和低亲和力结合位点的解离常数分别为 0.20 和 140.1 微摩尔。在移液管溶液中存在 30 毫摩尔钠的情况下,由低亲和力和高亲和力位点(可能分别为α1β1 和α3β1 同工酶)产生的钠钾泵电流的相对幅度估计为13 : 1。4. 此外,移液管钠在 5 至 100 毫摩尔浓度范围内对钠钾泵电流的激活也表现出双相浓度依赖性,通过假设存在对钠具有高亲和力和低亲和力的两种同工酶(分别为 6.7 和 67.6 毫摩尔)可以合理地很好拟合。5. 因此,本研究提供了功能证据表明,钠钾ATP酶包含两种功能不同的同工酶,正如大鼠小型DRG神经元中α1β1 和α3β1 所预期的那样。

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