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幼年和成年大鼠大脑中可氧化底物之间的竞争。解离细胞。

Competition among oxidizable substrates in brains of young and adult rats. Dissociated cells.

作者信息

Roeder L M, Tildon J T, Holman D C

出版信息

Biochem J. 1984 Apr 1;219(1):131-5. doi: 10.1042/bj2190131.

Abstract

The rates of conversion of D-(-)-3-hydroxy[3-14C]butyrate, [3-14C]acetoacetate, [6-14C]glucose and [U-14C]glutamine into 14CO2 were measured in the presence and absence of alternative oxidizable substrates in intact dissociated cells from the brains of young and adult rats. When unlabelled glutamine was added to [6-14C]glucose or unlabelled glucose was added to [U-14C]glutamine, the rate of 14CO2 production was decreased in both young and adult rats. The rate of oxidation of 3-hydroxy[3-14C]butyrate was also decreased by the addition of unlabelled glutamine in both age groups, but in the reverse situation, i.e. unlabelled 3-hydroxybutyrate added to [U-14C]glutamine, only the brain cells from young rats were affected. No significant effects were seen when glutamine and acetoacetate were combined. The addition of either of the two ketone bodies to [6-14C]glucose markedly lowered the rate of 14CO2 production in young rats, but in the adult only 3-hydroxybutyrate was effective and the magnitude of decrease in the rate of [6-14C]glucose oxidation was much lower than in young animals. Unlabelled glucose decreased the rate of [3-14C]acetoacetate oxidation to a minor extent in brain cells from both age groups; when added to 3-hydroxy[3-14C]butyrate, glucose had no effect in young rats and greatly enhanced 14CO2 production in adult brain cells. Many of these patterns of substrate interaction in dissociated brain cells differ from those in whole homogenates; they may be a function of the plasma membranes and the role of a carrier-mediated transport system or a reflection of a difference in the population of cell types or subcellular organelles in these two preparations.

摘要

在有和没有可氧化替代底物的情况下,测定了幼年和成年大鼠大脑解离的完整细胞中D-(-)-3-羟基[3-¹⁴C]丁酸、[3-¹⁴C]乙酰乙酸、[6-¹⁴C]葡萄糖和[U-¹⁴C]谷氨酰胺转化为¹⁴CO₂的速率。当将未标记的谷氨酰胺添加到[6-¹⁴C]葡萄糖中或未标记的葡萄糖添加到[U-¹⁴C]谷氨酰胺中时,幼年和成年大鼠的¹⁴CO₂产生速率均降低。在两个年龄组中,添加未标记的谷氨酰胺也会降低3-羟基[3-¹⁴C]丁酸的氧化速率,但在相反的情况下,即未标记的3-羟基丁酸添加到[U-¹⁴C]谷氨酰胺中,只有幼年大鼠的脑细胞受到影响。当谷氨酰胺和乙酰乙酸混合时,未观察到显著影响。将两种酮体中的任何一种添加到[6-¹⁴C]葡萄糖中,均可显著降低幼年大鼠的¹⁴CO₂产生速率,但在成年大鼠中,只有3-羟基丁酸有效,且[6-¹⁴C]葡萄糖氧化速率的降低幅度远低于幼年动物。未标记的葡萄糖在两个年龄组的脑细胞中均在较小程度上降低了[3-¹⁴C]乙酰乙酸的氧化速率;当添加到3-羟基[3-¹⁴C]丁酸中时,葡萄糖对幼年大鼠没有影响,而在成年大鼠脑细胞中则大大提高了¹⁴CO₂的产生。解离的脑细胞中许多这些底物相互作用模式与全匀浆中的不同;它们可能是质膜的功能以及载体介导的转运系统的作用,或者反映了这两种制剂中细胞类型或亚细胞器群体的差异。

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