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分离的大鼠脑突触体中ATP合成、钾离子梯度与神经递质氨基酸水平之间的关系

Relationships among ATP synthesis, K+ gradients, and neurotransmitter amino acid levels in isolated rat brain synaptosomes.

作者信息

Dagani F, Erecińska M

出版信息

J Neurochem. 1987 Oct;49(4):1229-40. doi: 10.1111/j.1471-4159.1987.tb10015.x.

Abstract

Correlations were made among ATP synthesis, transmembrane K+ gradients, and leakage of three amino acid neurotransmitters, gamma-aminobutyric acid (GABA), aspartate, and glutamate, in rat brain synaptosomes incubated under normoxic and respiration-limited conditions. Even under normoxic conditions, a substantial proportion of total ATP synthesis (8%) was provided by glycolysis. Limitation of respiration by approximately 30% through addition of amobarbital (Amytal) caused a twofold decrease in the creatine phosphate/creatine ([CrP]/[Cr]) ratio, and consequently the [ATP]/[ADP] ratio, and a threefold increase in lactate production. There was a detectable decrease in intracellular [K+] and small rises in external GABA, aspartate, and glutamate concentrations. More severe limitations in ATP synthesis caused larger declines in the [CrP]/[Cr] ratio and progressive leakage of K+ and neurotransmitter amino acids. A comparison of delta GATP and delta GNa, K showed the former to be larger by 6 kcal, which indicates that the plasma membrane Na+/K+ pump operates at far from equilibrium. Under respiration-limited conditions, even when total ATP synthesis decreased by approximately 80% and [ATP] declined to less than 0.4 mM, delta GATP was still larger than delta GNa,K. It is suggested that during hypoxia and ischemia, the activity of the plasma membrane Na+/K+ pump in brain becomes limited by [ATP], which falls below the Km value for the low-affinity regulatory site on the enzyme. This failure of the pump and consequent collapse of the ion gradients may contribute to the leakage of neurotransmitter amino acids that occurs in these pathological states.

摘要

在常氧和呼吸受限条件下孵育的大鼠脑突触体中,对ATP合成、跨膜K⁺梯度以及三种氨基酸神经递质(γ-氨基丁酸(GABA)、天冬氨酸和谷氨酸)的泄漏进行了相关性研究。即使在常氧条件下,总ATP合成的很大一部分(8%)也是由糖酵解提供的。通过添加异戊巴比妥(阿米妥)使呼吸受限约30%,导致磷酸肌酸/肌酸([CrP]/[Cr])比值下降两倍,进而使[ATP]/[ADP]比值下降,乳酸生成增加三倍。细胞内[K⁺]可检测到下降,细胞外GABA、天冬氨酸和谷氨酸浓度略有升高。ATP合成的更严重受限导致[CrP]/[Cr]比值更大幅度下降以及K⁺和神经递质氨基酸的逐渐泄漏。比较ΔGATP和ΔGNa,K表明前者比后者大6千卡,这表明质膜Na⁺/K⁺泵在远离平衡的状态下运行。在呼吸受限条件下,即使总ATP合成下降约80%且[ATP]降至低于0.4 mM,ΔGATP仍大于ΔGNa,K。有人提出,在缺氧和缺血期间,脑质膜Na⁺/K⁺泵的活性受到[ATP]的限制,[ATP]降至该酶低亲和力调节位点的Km值以下。泵的这种功能障碍以及随之而来的离子梯度崩溃可能导致这些病理状态下神经递质氨基酸的泄漏。

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