首页> 美国卫生研究院文献>The Journal of General Physiology >Effects of Intracellular Adenosine-5-diphosphate and Orthophosphate on the Sensitivity of Sodium Efflux from Squid Axon to External Sodium and Potassium
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Effects of Intracellular Adenosine-5-diphosphate and Orthophosphate on the Sensitivity of Sodium Efflux from Squid Axon to External Sodium and Potassium

机译:胞内5-二磷酸腺苷和正磷酸对鱿鱼轴突对钠和钾外排钠敏感性的影响

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摘要

A study was made of sodium efflux from squid giant axon, and its sensitivity to external K and Na. When sodium efflux from untreated axons was strongly stimulated by Ko, Nao was inhibitory; when dependence on Ko was low, Nao had a stimulatory effect. Incipient CN poisoning or apyrase injection, which produces high intracellular levels of ADP1 and Pi, rendered sodium efflux less dependent on external K and more dependent on external Na. Injection of ADP, AMP, arginine, or creatine + creatine phosphokinase, all of which raise ADP levels without raising Pi levels, had the same effect as incipient CN poisoning. Pi injection had no effect on the K sensitivity of sodium efflux. Axons depleted of arginine and phosphoarginine by injection of arginase still lost their K sensitivity when the ATP:ADP ratio was lowered and regained it partially when the ratio was raised. Rough calculations show that sodium efflux is maximally Ko-dependent when the ATP:ADP ratio is about 10:1, becomes insensitive to Ko when the ratio is about 1:2, and is inhibited by Ko when the ratio is about 1:10. Deoxy-ATP mimicked ADP when injected into intact axons. Excess Mg, as well as Pi, inhibited both strophanthidin-sensitive and strophanthidin-insensitive sodium efflux. An outline is presented for a model which might explain the effects of ADP, Pi and deoxy-ATP.
机译:研究了鱿鱼巨轴突的钠流出及其对外部钾和钠的敏感性。当Ko强烈刺激未处理轴突的钠流出时,Nao具有抑制作用。当对Ko的依赖性很低时,Nao具有刺激作用。初始CN中毒或腺苷三磷酸双磷酸酶注射会产生高水平的细胞内ADP 1 和Pi,因此钠流出较少依赖外部钾,而更多依赖外部Na。注射ADP,AMP,精氨酸或肌酸+肌酸磷酸激酶,均能提高ADP的水平而不提高Pi的水平,与初期CN中毒的作用相同。 Pi注射对钠流出的钾敏感性没有影响。当ATP:ADP比降低时,通过注射精氨酸酶而消耗精氨酸和磷酸精氨酸的轴突仍然失去其K敏感性,而当比例增加时,轴突仍部分恢复。粗略的计算表明,当ATP:ADP比率约为10:1时,钠的流出量最大程度地依赖于Ko,当比率约为1:2时,其对Ko变得不敏感,而当比率约为1:10时,其被Ko抑制。当注入完整的轴突时,脱氧ATP模仿ADP。过量的Mg和Pi都抑制了对鸟霉素的敏感和对鸟嘌呤不敏感的钠流出。提出了一个模型的轮廓,该轮廓可以解释ADP,Pi和脱氧ATP的作用。

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