首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Acetylcholine-receptor-mediated ion flux in electroplax membrane microsacs (vesicles): Change in mechanism produced by asymmetrical distribution of sodium and potassium ions
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Acetylcholine-receptor-mediated ion flux in electroplax membrane microsacs (vesicles): Change in mechanism produced by asymmetrical distribution of sodium and potassium ions

机译:乙酰胆碱受体介导的电浆膜微囊(囊泡)中的离子通量:钠和钾离子的不对称分布产生的机理变化

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摘要

The kinetics of acetylcholine-receptor-mediated efflux of inorganic ions from electroplax microsacs of Electrophorus electricus in the presence of varying alkali metal ion concentrations on both sides of the membrane have been investigated. The efflux, a monophasic process when the ion distribution is symmetrical (the same concentrations and types of ions on both sides of the membrane), becomes a biphasic process, consisting of a very rapid initial release of ions followed by a slower first-order process, under conditions that resemble the physiological state of the neural membrane (potassium ions inside the microsacs and sodium ions on the outside). The initial phase of the efflux discriminates between calcium and sodium ions and is inhibited by potassium ions in the external solution. The rate constant associated with this phase is at least 40 times larger than the rate constant associated with the slower efflux. Both phases depend on the concentration of acetylcholine or carbamoylcholine, and are inhibited by receptor inhibitors (d-tubocurarine and α-bungarotoxin).A simple model is proposed which relates the kinetics of the flux to ligand-induced conformational changes in the receptor. We also indicate the relationship between the biphasic kinetics of the flux observed in microsacs to “desensitization,” the phenomenon in which, on addition of acetylcholine, the transmembrane voltage of muscle and nerve cells first increases and then decreases to its resting value within a few seconds.
机译:在膜的两侧存在变化的碱金属离子浓度的情况下,研究了乙酰胆碱受体介导的无机离子从电泳的电囊微囊流出的动力学。外排是离子分布对称时的单相过程(膜两侧的离子浓度和类型相同),变成了双相过程,包括非常快速的初始离子释放以及较慢的一阶过程,在类似于神经膜生理状态的条件下(微囊内部的钾离子和外部的钠离子)。外排的初始阶段区分钙离子和钠离子,并被外部溶液中的钾离子抑制。与该阶段相关的速率常数至少比与较慢外排相关的速率常数大40倍。这两个阶段均取决于乙酰胆碱或氨基甲酰胆碱的浓度,并受受体抑制剂(d-微管尿素和α-真菌毒素)抑制。提出了一个简单的模型,该模型将通量的动力学与配体诱导的受体构象变化相关。我们还指出了在微囊中观察到的通量的双相动力学与“脱敏”之间的关系,在这种现象中,加入乙酰胆碱后,肌肉和神经细胞的跨膜电压首先升高,然后在几秒钟内下降至其静置值。秒。

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