首页> 外文OA文献 >Transient Cl- and K+ Currents during the Action Potential in Chara inflata (Effects of External Sorbitol, Cations, and Ion Channel Blockers).
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Transient Cl- and K+ Currents during the Action Potential in Chara inflata (Effects of External Sorbitol, Cations, and Ion Channel Blockers).

机译:Chara inflata动作电位期间的瞬时Cl-和K +电流(外部山梨糖醇,阳离子和离子通道阻滞剂的影响)。

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摘要

In voltage-clamp experiments, a two-pulse procedure was used to investigate the ionic currents underlying the action potential in Chara inflata. A prepulse hyperpolarized the membrane from a resting potential of about -100 to -200 mV. The prepulse was followed by a second pulse that changed the potential difference (p.d.) to -100 mV and less negative values in steps of 20 mV. This two-pulse procedure induces action potentials that have a reproducible time course, which is essential for any comparative investigation of the action potential. The two-pulse procedure reveals that in the charophyte C. inflata the electric current flowing across the cell membranes during positive voltage-clamp steps from the resting p.d. consists of a leak current flowing from the start of the pulse, followed by a transient inward-going current, Ii, commencing after a delay, and preceding a delayed transient outward current, Io. The characteristics of the current components and their response to various ion channel blockers and ionic treatments suggest that: (a) Ii, which is blocked by the external application of 9-anthracenecarboxylic acid, is carried by Cl- and (b) Io, which is blocked by the external application of the organic anions tetraethylammonium (TEA+) and nonyltriethylammonium, is carried mainly by K+. The magnitude and behavior of these K+ and Cl- currents could be modified by changes in the external concentration of CaCl2, LiCl, or NaCl but not sorbitol. Hence, it is concluded that NaCl-enhanced transient inward Cl- current, Ii, is due to ionic effects of NaCl rather than to its osmotic effects. The modification of the K+ current, Io, either by changing external K+ concentrations or by blocking the current with TEA+, also alters the Cl- currents Ii.
机译:在电压钳制实验中,使用了两个脉冲过程来研究在Chara inflata中作为动作电位基础的离子电流。预脉冲使膜从约-100到-200 mV的静止电位超极化。在预脉冲之后是第二个脉冲,该脉冲将电势差(p.d.)更改为-100 mV,并以20 mV的步幅减小了负值。这种两脉冲过程产生的动作电位具有可重现的时间过程,这对于任何对动作电位的比较研究都是必不可少的。两脉冲程序显示,在风化衣藻C. inflata中,在从静止p.d开始的正电压钳位步骤中,流过细胞膜的电流。由从脉冲开始流过的泄漏电流组成,随后是瞬态内向电流Ii,它在延迟之后开始,并且在延迟的瞬态外向电流Io之前开始。当前组分的特征及其对各种离子通道阻滞剂和离子处理的响应表明:(a)被9-蒽羧酸外用阻止的Ii由Cl-携带,(b)Io通过外部施加有机阴离子四乙基铵(TEA +)和壬基三乙基铵来阻止其被K +携带。这些K +和Cl-电流的大小和行为可以通过改变CaCl2,LiCl或NaCl的外部浓度(而不是山梨糖醇)来改变。因此,可以得出结论,NaCl增强的瞬时向内Cl电流Ii是由于NaCl的离子作用而不是其渗透作用。通过改变外部K +浓度或用TEA +阻断电流来改变K +电流Io,也会改变Cl-电流Ii。

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    Kourie, J. I.;

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  • 年度 1994
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  • 原文格式 PDF
  • 正文语种 en
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