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氨和β-亚甲基-DL-天冬氨酸对原代培养的星形胶质细胞和神经元中谷氨酸及相关氨基酸代谢的不同影响。

Differential effects of ammonia and beta-methylene-DL-aspartate on metabolism of glutamate and related amino acids by astrocytes and neurons in primary culture.

作者信息

Lai J C, Murthy C R, Cooper A J, Hertz E, Hertz L

机构信息

Department of Biochemistry, Cornell University Medical College, New York, NY 10021.

出版信息

Neurochem Res. 1989 Apr;14(4):377-89. doi: 10.1007/BF01000042.

Abstract

The effects of ammonium chloride (3 mM) and beta-methylene-DL-aspartate (BMA; 5 mM) (an inhibitor of aspartate aminotransferase, a key enzyme of the malate-aspartate shuttle (MAS] on the metabolism of glutamate and related amino acids were studied in primary cultures of astrocytes and neurons. Both ammonia and BMA inhibited 14CO2 production from [U-14C]- and [1-14C]glutamate by astrocytes and neurons and their effects were partially additive. Acute treatment of astrocytes with ammonia (but not BMA) increased astrocytic glutamine. Acute treatment of astrocytes with ammonia or BMA decreased astrocytic glutamate and aspartate (both are key components of the MAS). Acute treatment of neurons with ammonia decreased neuronal aspartate and glutamine and did not apparently affect the efflux of aspartate from neurons. However, acute BMA treatment of neurons led to decreased neuronal glutamate and glutamine and apparently reduced the efflux of aspartate and glutamine from neurons. The data are consistent with the notion that both ammonia and BMA may inhibit the MAS although BMA may also directly inhibit cellular glutamate uptake. Additionally, these results also suggest that ammonia and BMA exert differential effects on astroglial and neuronal glutamate metabolism.

摘要

在星形胶质细胞和神经元的原代培养物中,研究了氯化铵(3 mM)和β-亚甲基-DL-天冬氨酸(BMA;5 mM)(天冬氨酸转氨酶的抑制剂,苹果酸-天冬氨酸穿梭[MAS]的关键酶)对谷氨酸及相关氨基酸代谢的影响。氨和BMA均抑制星形胶质细胞和神经元由[U-14C]-和[1-14C]谷氨酸产生14CO2,且它们的作用具有部分相加性。用氨(而非BMA)对星形胶质细胞进行急性处理会增加星形胶质细胞的谷氨酰胺。用氨或BMA对星形胶质细胞进行急性处理会降低星形胶质细胞的谷氨酸和天冬氨酸(二者均为MAS的关键成分)。用氨对神经元进行急性处理会降低神经元的天冬氨酸和谷氨酰胺,且显然不会影响天冬氨酸从神经元的流出。然而,用BMA对神经元进行急性处理会导致神经元的谷氨酸和谷氨酰胺减少,且显然会减少天冬氨酸和谷氨酰胺从神经元的流出。这些数据与氨和BMA均可能抑制MAS这一观点一致,尽管BMA也可能直接抑制细胞对谷氨酸的摄取。此外,这些结果还表明氨和BMA对星形胶质细胞和神经元的谷氨酸代谢具有不同的影响。

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