首页> 美国卫生研究院文献>The Journal of Physiology >Ions required for the electrogenic transport of GABA by horizontal cells of the catfish retina.
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Ions required for the electrogenic transport of GABA by horizontal cells of the catfish retina.

机译:ABA鱼视网膜的水平细胞通过GABA进行电迁移所需的离子。

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摘要

1. Solitary horizontal cells were isolated from catfish retinas. Membrane currents activated by extracellular and intracellular GABA were characterized during a whole-cell voltage clamp. 2. Extracellular GABA activated two currents: a GABAA current, and an 'influx' current mediated by a GABA transporter. The influx current was studied after the GABAA current was blocked with 0.5 mM picrotoxin. The influx current required extracellular Na+ and Cl-. Extracellular Na+ could not be replaced by another alkali metal cation. 3. The influx current also depended upon the identity of ions in the intracellular solution. Either an intracellular alkali metal cation or Cl- was required to produce an influx current. 4. The influx current was inward at -75 mV and decreased as the membrane was depolarized towards +20 mV. When the membrane was depolarized beyond +25 mV, the polarity of the current depended upon the ion composition of the intracellular solution and could be inward, zero or outward. 5. The introduction of GABA into a cell during the course of an experiment produced an outward current. This 'efflux' current was small at -75 mV and increased with depolarization. The efflux current required intracellular Na+ and Cl-. Intracellular Na+ could not be replaced by another alkali metal cation. 6. The efflux current also depended upon the identity of ions in the extracellular solution. An extracellular alkali metal cation was required to produce an efflux current. Removing extracellular Cl- did not affect the efflux current. 7. The outward movement of GABA produced a local accumulation in extracellular GABA concentration that could be detected by the activation of the GABAA current. GABA efflux only occurred during conditions that produced an efflux current. Electroneutral efflux did not occur. 8. In the absence of GABA, extracellular alkali metal cations produced a 'leakage' current. The leakage current was inward at -75 mV and decreased as the membrane was depolarized towards +20 mV. When the membrane was depolarized beyond +25 mV, the polarity of the leakage current depended, like the GABA influx current, upon the ion composition of the intracellular solution and could be inward, zero or outward. The addition of GABA to the intracellular solution produced an efflux current and suppressed the leakage current. 9. We conclude that the transporter mediates electrogenic influx, efflux and leakage. Each mode of operation depends upon ions on both sides of the membrane. Influx and efflux are not symmetrical.
机译:1.从cat鱼视网膜分离出水平细胞。全细胞电压钳制期间表征了由细胞外和细胞内GABA激活的膜电流。 2.细胞外GABA激活两种电流:GABAA电流和由GABA转运蛋白介导的“流入”电流。在用0.5 mM微小毒素阻断GABAA电流后研究流入电流。涌入电流需要细胞外Na +和Cl-。细胞外Na +不能被其他碱金属阳离子替代。 3.流入电流还取决于细胞内溶液中离子的身份。需要细胞内碱金属阳离子或Cl-产生流入电流。 4.流入电流在-75 mV处向内流入,并随着膜向+20 mV去极化而减小。当膜去极化超过+25 mV时,电流的极性取决于细胞内溶液的离子组成,并且可以向内,为零或向外。 5.在实验过程中将GABA引入细胞会产生外向电流。该“外流”电流在-75 mV处很小,并且随着去极化而增加。外排电流需要细胞内Na +和Cl-。细胞内Na +不能被其他碱金属阳离子替代。 6.外排电流还取决于细胞外溶液中离子的身份。需要胞外碱金属阳离子以产生外排电流。去除细胞外Cl-不会影响外排电流。 7. GABA的向外运动在细胞外GABA浓度中产生了局部积累,可以通过激活GABAA电流来检测。 GABA流出仅在产生流出电流的条件下发生。没有发生电中性外排。 8.在不存在GABA的情况下,细胞外碱金属阳离子产生“泄漏”电流。泄漏电流在-75 mV处向内,并随着膜对+20 mV的去极化而减小。当膜去极化超过+25 mV时,泄漏电流的极性(如GABA流入电流)取决于细胞内溶液的离子组成,并且可能向内,为零或向外。向细胞内溶液中添加GABA会产生外排电流并抑制泄漏电流。 9.我们得出的结论是,转运蛋白介导了电涌,外排和渗漏。每种操作模式取决于膜两侧的离子。流入和流出不是对称的。

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