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核磁共振波谱法研究新皮质星形胶质细胞中13C乙酸盐和13C葡萄糖代谢:线粒体异质性的证据

NMR spectroscopic studies of 13C acetate and 13C glucose metabolism in neocortical astrocytes: evidence for mitochondrial heterogeneity.

作者信息

Sonnewald U, Westergaard N, Hassel B, Müller T B, Unsgård G, Fonnum F, Hertz L, Schousboe A, Petersen S B

机构信息

MR-Center, SINTEF UNIMED, Trondheim, Norway.

出版信息

Dev Neurosci. 1993;15(3-5):351-8. doi: 10.1159/000111355.

Abstract

Neocortical astrocytes were incubated with 13C-labeled substrates to determine metabolic pathways. 13C NMR spectroscopy was used to analyze 13C incorporation into glutamine and citrate from the different precursors--[1-13C]glucose or [2-13C]acetate. When glucose was the labeling substrate, incorporation due to pyruvate carboxylation should be observed in the C-2 position in glutamine and the C-4 position in citrate. A large incorporation due to pyruvate carboxylation was observed in glutamine in the C-2 and C-3 positions, but not in citrate. When acetate was the precursor, the labeling ratios in the C-2/C-4 positions in glutamine and in the equivalent positions in citrate were 0.27 and 0.11, respectively. Moreover, acetate labeled lactate in the C-2 position much less than did glucose. Altogether, these observations led to the conclusion that glutamine precursors and citrate are either produced in different types of astrocytes or in different tricarboxylic acid cycles, situated in functionally different mitochondria in the same cell, and that in all likelihood pyruvate carboxylase is expressed differently in these mitochondria.

摘要

将新皮质星形胶质细胞与13C标记的底物一起孵育,以确定代谢途径。使用13C核磁共振波谱分析13C从不同前体——[1-13C]葡萄糖或[2-13C]乙酸盐掺入谷氨酰胺和柠檬酸盐的情况。当葡萄糖作为标记底物时,在谷氨酰胺的C-2位置和柠檬酸盐的C-4位置应观察到由于丙酮酸羧化导致的掺入。在谷氨酰胺的C-2和C-3位置观察到由于丙酮酸羧化导致的大量掺入,但在柠檬酸盐中未观察到。当乙酸盐作为前体时,谷氨酰胺中C-2/C-4位置的标记率和柠檬酸盐中相应位置的标记率分别为0.27和0.11。此外,乙酸盐在C-2位置标记乳酸的程度远低于葡萄糖。总之,这些观察结果得出结论,谷氨酰胺前体和柠檬酸盐要么在不同类型的星形胶质细胞中产生,要么在同一细胞中功能不同的线粒体中的不同三羧酸循环中产生,而且很可能丙酮酸羧化酶在这些线粒体中的表达不同。

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