首页> 美国卫生研究院文献>The Journal of Physiology >Effect of changes in intra- and extracellular sodium on the inward (anomalous) rectification in salamander photoreceptors.
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Effect of changes in intra- and extracellular sodium on the inward (anomalous) rectification in salamander photoreceptors.

机译:细胞内和细胞外钠的变化对sal感光细胞向内(异常)整流的影响。

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摘要

Solitary rod inner segments were obtained by enzymic dissociation of the tiger salamander retina. Ih, an inward current activated by membrane hyperpolarization, was studied using the single-pipette voltage-clamp technique with patch pipettes. In order to investigate Ih in isolation from voltage-dependent potassium and calcium currents, it was necessary to superfuse with a solution containing TEA and cobalt. When the solution in the patch pipette contained 45 mM-KCl and 50 mM-NaCl, the characteristics of Ih were indistinguishable from those previously described with fine-tip micro-electrodes: the reversal potential was near-30 mV and Ih was blocked by extracellular caesium and enhanced by an increase in the extracellular potassium concentration. The increase in Ih observed when the extracellular potassium concentration is raised is due to an increase in conductance and in driving force. Replacement of sodium in the patch pipette with choline caused a 15 mV displacement of the reversal potential for Ih in the depolarized direction. When using sodium-free patch pipettes, replacement of extracellular sodium displaced the reversal potential for Ih to -74 mV, a value in the range of the potassium equilibrium potential in solitary inner segments. Intracellular or intra- and extracellular sodium substitution affected neither the activation range of Ih nor the maximum conductance. From points 3-6 it can be concluded that Ih is carried mainly, if not exclusively, by sodium and potassium and that the channel responsible for Ih is insensitive to modifications of the intra- or extracellular sodium concentration. The results of long-term hyperpolarization, of partial block with caesium and of total sodium substitution are consistent with sodium and potassium permeating the same type of channel.
机译:通过虎sal视网膜的酶解获得单独的杆内部节段。使用膜移液器的单移电压钳技术研究了Ih(通过膜超极化激活的内向电流)。为了从电压依赖性钾电流和钙电流中分离出Ih,必须将其与含TEA和钴的溶液进行超级熔合。当贴片移液器中的溶液包含45 mM-KCl和50 mM-NaCl时,Ih的特性与以前用细尖端微电极描述的那些没有区别:反转电位接近30 mV,Ih被细胞外阻滞铯和通过细胞外钾浓度的增加而增强。当细胞外钾浓度升高时,观察到的Ih升高是由于电导和驱动力的升高。用胆碱替代贴片移液器中的钠会导致去极化方向上Ih的反向电位偏移15 mV。使用无钠移液器时,细胞外钠的置换将Ih的逆转电位移至-74 mV,该值在单个内部段的钾平衡电位范围内。细胞内或细胞内和细胞外钠取代都不会影响1h的激活范围或最大电导率。从3-6点可以得出结论,Ih主要(如果不是唯一地)由钠和钾携带,并且负责Ih的通道对细胞内或细胞外钠浓度的改变不敏感。长期超极化,部分封闭铯和总钠取代的结果与钠和钾渗透相同类型的通道一致。

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