首页> 美国卫生研究院文献>The Journal of Physiology >Post-tetanic hyperpolarization sodium-potassium-activated adenosine triphosphatase and high energy phosphate levels in garfish olfactory nerve.
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Post-tetanic hyperpolarization sodium-potassium-activated adenosine triphosphatase and high energy phosphate levels in garfish olfactory nerve.

机译:破伤风后超极化钠钾激活的腺苷三磷酸酶和高能量磷酸盐水平在鱼的嗅觉神经中。

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摘要

1. While much is now known about the Na-K-ATPase and the posttetanic hyperpolarization of nervous tissue, they have yet to be studied together in the same preparation. 2. The post-tetanic hyperpolarization was studied in desheathed garfish olfactory nerve. The rate constant of decay of the post-tetanic hyperpolarization was determined by monitoring difference potentials after stimulation at 1/sec for 2-3 min. 3. In membrane fractions prepared from these nerves, the ouabain-sensitive ATPase activity (Na-K-ATPase) was determined by spectrophotometric measurements. 4. Both the post-tetanic hyperpolarization and the Na-K-ATPase showed a similar sigmoidal dependence on K+ concentration. The sequence of cation specificities measured at the K-site of the enzyme was the same as that determined by post-tetanic hyperpolarization measurements in whole nerve. 5. The rate constants of the enzyme showed a dependence on Na+ concentration that paralleled the way in which the post-tetanic hyperpolarization rate constants varied as a function of the number of impulses. When Na+ was completely replaced by Li+, neither enzyme activity nor post-tetanic hyperpolarization could be measured. 6. The pH optimum for enzyme activity was between pH 7-0 and 7-8, while the optimal pH for post-tetanic hyperpolarization was above pH 8-0. 7. Metabolite levels in preparations of this nerve studied in vitro correspond to levels found in vivo. 8. High energy phosphate levels were measured fluorometrically in extracts of nerve samples that had been stimulated in air at 1/sec for various intervals. 9. During the first 2 min of stimulation, there was a significant accumulation of inorganic phosphate, and the ATP/ADP.Pi ratio dropped appreciably. 10. The accumulation of ATPase products was commensurate with the approach of post-tetanic hyperpolarization rate constants to their maximum level. This provides direct evidence for an ATPase functioning in active Na+ transport in nerve. 11. The garfish Na-K-ATPase is sensitive to the ATP/ADP ratio of the incubating medium, but is relatively insensitive to orthophosphate, Pi. The fall in post-tetanic hyperpolarization rate constants observed with continued nerve stimulation may have been partially due to the falling ATP/ADP ratio measured in nerve under similar conditions.
机译:1.虽然现在人们对神经组织的Na-K-ATPase和破伤风后超极化现象了解很多,但仍需在相同的制剂中一起研究它们。 2.研究了干燥的鱼嗅觉神经的强直性超极化。通过监测以1 / sec刺激2-3分钟后的电位差来确定后强直极化的衰减速率常数。 3.在由这些神经制备的膜级分中,通过分光光度法测定了哇巴因敏感性ATPase活性(Na-K​​-ATPase)。 4.破伤风后超极化和Na-K-ATPase都显示出类似的S形依托性,依赖于K +浓度。在酶的K位点测得的阳离子特异性序列与在整个神经中通过破伤风后超极化测量确定的序列相同。 5.酶的速率常数显示出对Na +浓度的依赖性,这种依赖性与破伤风后超极化速率常数随脉冲数变化的方式平行。当Na +完全被Li +取代时,既无法测量酶活性,也无法检测到强直性超极化。 6.对于酶活性而言,最适pH在pH 7-0至7-8之间,而后破伤风超极化的最适pH在pH 8-0以上。 7.在体外研究的该神经制剂中的代谢物水平对应于体内发现的水平。 8.用荧光法测定了神经样本提取物的高能磷酸盐水平,这些神经样本的提取物在空气中以1 /秒的速度被刺激了不同的时间间隔。 9.在刺激的前2分钟内,无机磷酸盐大量积累,ATP / ADP.Pi比值明显下降。 10. ATPase产物的积累与破伤风后超极化率常数达到最大水平的方法相称。这提供了ATPase在神经的主动Na +转运中起作用的直接证据。 11. fish鱼Na-K-ATPase对孵育培养基的ATP / ADP比敏感,但对正磷酸盐Pi相对不敏感。在持续的神经刺激下观察到的强直性超极化率常数的下降可能部分是由于在类似条件下神经中测得的ATP / ADP比下降。

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