[Formation of ammonia from glutamic acid and ADP in purified mitochondria and nerve endings of rat cerebral cortex].

Voprosy biokhimii mozga Pub Date : 1976-01-01
Zh A Paronian, G V Aprikian, G A Mkrtchian, S S Musaelian
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Abstract

The aim of the present study was to elucidate the formation of ammonium and its quantitative interrelationship in mitochondrial and synaptosomal fractions obtained from rat cerebral cortex. The data obtained have shown that in mitochondrial fraction the level of ammonium is high while its endogenous formation is less pronounced. A large amount of ammonium is formed from ADP and some from glutamic acid, especially in the presence of ADP. The level of ammonium is, on the contrary, low in the synaptosomal fraction and endogenous ammonium formation is high. In this fraction also there is ammonium formation from both ADP and GA but to a smaller extent than in the mitochondrial fraction. The data obtained make up conclude that the formation of ammonium by the glutamatedehydrogenase pathway in the presence of activators is an important mechanism in mitochondria but not synaptosomes.

[纯化的大鼠大脑皮层线粒体和神经末梢中谷氨酸和ADP形成氨]。
本研究的目的是阐明大鼠大脑皮层线粒体和突触体组分中铵的形成及其定量相互关系。获得的数据表明,在线粒体分数中铵的水平很高,而其内源性形成不太明显。ADP和谷氨酸形成了大量的铵,特别是在ADP存在的情况下。相反,在突触体部分中铵的水平较低,内源性铵的形成较高。在这个部分中,ADP和GA也有铵的形成,但程度比线粒体部分要小。由此得出结论,谷氨酸脱氢酶途径在激活剂存在下形成铵是线粒体而非突触体的重要机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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