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体外大鼠大脑皮层谷氨酰胺酶活性的调控:谷氨酸、磷酸盐、铵、钙和氢离子的影响

Control of glutaminase activity in rat brain cortex in vitro: influence of glutamate, phosphate, ammonium, calcium and hydrogen ions.

作者信息

Benjamin A M

出版信息

Brain Res. 1981 Mar 16;208(2):363-77. doi: 10.1016/0006-8993(81)90564-3.

Abstract

Studies of the kinetics of product inhibitions of glutaminase activity of rat brain cortical homogenates incubated in Krebs-Ringer medium in presence of the activating anion phosphate show that whereas ammonium acts competitively with respect to L-glutamine, L-glutamate acts non-competitively. Calcium ions are stimulatory with maximum stimulation occurring at 1 mM. This effect is blocked by EGTA. The optimum pH for glutamine hydrolysis is 8.2 with maximum stimulation by Ca2+ occurring at pH 7.8. Similar observations have been made with a crude synaptosomal fraction of brain cortex and also with brain cortex slices where the rates of hydrolyses are about one order of magnitude lower than those with brain homogenates. Ammonium (2 mM) diminishes glutamate and aspartate, and enhances glutamine and ammonium levels of brain cortex slices incubated in a physiological glucose-saline medium. It is suggested that stimulation by Ca2+ ions may occur in part by enhanced phosphate, and by diminished glutamate and H+ ion concentrations of mitochondria and that mutual regulation of glutaminase and glutamine synthetase may exist in glia but not in nerve terminals. It is proposed that calcium plays a role in maintaining normal electrical activities of certain neurons in part by its effects on glutamate regeneration in nerve terminals from glial-derived glutamine and that when brain cell ammonium is maintained at levels above the normal, suppressions of glutaminase activity in nerve terminals could affect the rate of formation of glutamine-derived neurotransmitters.

摘要

在存在激活阴离子磷酸盐的情况下,于Krebs - Ringer培养基中孵育大鼠脑皮质匀浆,对谷氨酰胺酶活性的产物抑制动力学研究表明,虽然铵对L - 谷氨酰胺起竞争性作用,但L - 谷氨酸起非竞争性作用。钙离子具有刺激作用,在1 mM时刺激作用最大。这种作用被EGTA阻断。谷氨酰胺水解的最适pH为8.2,Ca2 + 在pH 7.8时刺激作用最大。对脑皮质的粗突触体部分以及脑皮质切片也进行了类似观察,其中水解速率比脑匀浆低约一个数量级。铵(2 mM)会降低脑皮质切片在生理葡萄糖 - 盐溶液培养基中孵育时的谷氨酸和天冬氨酸水平,并提高谷氨酰胺和铵的水平。有人提出,Ca2 + 离子的刺激作用可能部分是通过增强磷酸盐以及降低线粒体的谷氨酸和H + 离子浓度而发生的,并且在神经胶质细胞中可能存在谷氨酰胺酶和谷氨酰胺合成酶的相互调节,但在神经末梢中不存在。有人提出,钙在维持某些神经元的正常电活动中起作用,部分是通过其对神经末梢中由神经胶质来源的谷氨酰胺再生谷氨酸的影响,并且当脑细胞铵维持在高于正常水平时,神经末梢中谷氨酰胺酶活性的抑制可能会影响谷氨酰胺衍生神经递质的形成速率。

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