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The production of adenosine triphosphate in perfused giant axons of Loligo

机译:Loligo灌注巨轴突中三磷酸腺苷的产生

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摘要

1. The light production by squid giant axons perfused with solutions containing extract of firefly tails has been studied to give information about the production of ATP in such axons.2. An initial flash occurs when the perfusion fluid first enters the fibre. There is a secondary production of light, noticeable when the perfusion is halted, providing glutamate or aspartate are present in the perfusion medium.3. There is no secondary light production if glutamate is replaced by sulphate, succinate or α-ketoglutarate in the perfusion fluid.4. Ouabain has no effect whereas cyanide and oligomycin both block the secondary light production, the latter irreversibly.5. When the sodium outside the fibre is replaced by lithium or choline the secondary light production is often reduced and occasionally abolished.6. A raised internal sodium does not enhance secondary light production.7. The secondary light production is dependent upon the concentration of AMP in the perfusion solution.8. Fresh axoplasm generates a powerful light on immersion in perfusion fluid whereas dialysed axoplasm, even in the presence of added glutamate, generates no light whatever.9. The evidence, on balance, suggests that, under the conditions of the experiments described, there is no detectable reversal of active transport in perfused nerve fibres but that there is an enzyme system, probably membrane bound, capable of generating ATP from glutamate or aspartate and AMP by oxidative phosphorylation. The enzyme system can be inhibited by the replacement of external sodium.
机译:1.研究了用鱿鱼巨型轴突灌注含有萤火虫尾巴提取物的溶液产生的光,以提供有关此类轴突中ATP产生的信息。当灌注液首先进入纤维时会发生初始闪光。如果在灌注介质中存在谷氨酸或天冬氨酸,则有二次光产生,在停止灌注时会明显。3。如果在灌注液中用硫酸盐,琥珀酸盐或α-酮戊二酸代替谷氨酸,则不会产生二次光。4。瓦巴因没有作用,而氰化物和寡霉素都阻止了次级光的产生,后者是不可逆的。5。当纤维外部的钠被锂或胆碱替代时,二次光的产生通常会减少,甚至会被取消。6。内部钠的增加不会增强二次光的产生7。二次光的产生取决于灌注溶液中AMP的浓度8。新鲜的腋质在浸入灌注液中时会发出强烈的光,而透析过的腋质即使在添加谷氨酸的情况下也不会产生任何光。9。总而言之,证据表明,在所述实验条件下,在灌注的神经纤维中没有可检测到的主动转运逆转,但是存在一种酶系统,可能是膜结合的,能够从谷氨酸或天冬氨酸和谷氨酸生成ATP。 AMP通过氧化磷酸化。可以通过更换外部钠来抑制酶系统。

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