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[单价阳离子对大鼠脑内谷氨酸代谢的影响]

[Effect of monovalent cations on glutamate metabolism in rat brain].

作者信息

Nilova N S

出版信息

Biokhimiia. 1976 Oct;41(10):1778-83.

PMID:1024579
Abstract

Glutamate oxidation in vitro via deamination and transamination during gramicidin C-induced transport of K+ and Na+ in rat nervous tissue mitochondria was studied. An increase in ammonium production, i.e. in glutamate oxidation due to deamination, was shown to occur with maximal increase of oxygen consumption in the presence of cations. It was found that 1.5 mM Na+ activate oxygen consumption by 15% and accelerate ammonium production from glutamate (by 17%). No changes in aspartate production were observed. 15 mM K+ increase oxygen consumption by 29% and ammonium production by 11% during a decrease in aspartate production as compared to glutamate oxidation in the presence of a lower (10 mM) concentration of K+ in the samples.

摘要

研究了在短杆菌肽C诱导大鼠神经组织线粒体中钾离子和钠离子转运过程中,谷氨酸通过脱氨基作用和转氨基作用进行的体外氧化。结果表明,由于脱氨基作用导致的谷氨酸氧化增加,即铵产量增加,在阳离子存在的情况下,随着氧气消耗量的最大增加而发生。发现1.5 mM的钠离子可使氧气消耗量增加15%,并加速谷氨酸产生铵(增加17%)。未观察到天冬氨酸产量的变化。与样品中较低(10 mM)浓度的钾离子存在时谷氨酸氧化相比,15 mM的钾离子在天冬氨酸产量下降期间使氧气消耗量增加29%,铵产量增加11%。

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