A comprehensive metabolic profile of cultured astrocytes using isotopic transient metabolic flux analysis and C-labeled glucose.

Frontiers in neuroenergetics Pub Date : 2011-09-07 eCollection Date: 2011-01-01 DOI:10.3389/fnene.2011.00005
Ana I Amaral, Ana P Teixeira, Bjørn I Håkonsen, Ursula Sonnewald, Paula M Alves
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引用次数: 42

Abstract

Metabolic models have been used to elucidate important aspects of brain metabolism in recent years. This work applies for the first time the concept of isotopic transient 13C metabolic flux analysis (MFA) to estimate intracellular fluxes in primary cultures of astrocytes. This methodology comprehensively explores the information provided by 13C labeling time-courses of intracellular metabolites after administration of a 13C-labeled substrate. Cells were incubated with medium containing [1-13C]glucose for 24 h and samples of cell supernatant and extracts collected at different time points were then analyzed by mass spectrometry and/or high performance liquid chromatography. Metabolic fluxes were estimated by fitting a carbon labeling network model to isotopomer profiles experimentally determined. Both the fast isotopic equilibrium of glycolytic metabolite pools and the slow labeling dynamics of TCA cycle intermediates are described well by the model. The large pools of glutamate and aspartate which are linked to the TCA cycle via reversible aminotransferase reactions are likely to be responsible for the observed delay in equilibration of TCA cycle intermediates. Furthermore, it was estimated that 11% of the glucose taken up by astrocytes was diverted to the pentose phosphate pathway. In addition, considerable fluxes through pyruvate carboxylase [PC; PC/pyruvate dehydrogenase (PDH) ratio = 0.5], malic enzyme (5% of the total pyruvate production), and catabolism of branched-chained amino acids (contributing with ∼40% to total acetyl-CoA produced) confirmed the significance of these pathways to astrocytic metabolism. Consistent with the need of maintaining cytosolic redox potential, the fluxes through the malate-aspartate shuttle and the PDH pathway were comparable. Finally, the estimated glutamate/α-ketoglutarate exchange rate (∼0.7 μmol mg prot-1 h-1) was similar to the TCA cycle flux. In conclusion, this work demonstrates the potential of isotopic transient MFA for a comprehensive analysis of energy metabolism.

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利用同位素瞬时代谢通量分析和c标记葡萄糖研究培养星形胶质细胞的综合代谢谱。
近年来,代谢模型已被用于阐明脑代谢的重要方面。本工作首次应用同位素瞬态13C代谢通量分析(MFA)的概念来估计星形胶质细胞原代培养的细胞内通量。该方法全面探索了13C标记的底物给药后细胞内代谢物的时间过程所提供的信息。细胞在含[1-13C]葡萄糖的培养基中孵育24小时,在不同时间点收集细胞上清和提取液样品,然后通过质谱和/或高效液相色谱分析。代谢通量通过将碳标记网络模型拟合到实验确定的同位素体剖面来估计。该模型可以很好地描述糖酵解代谢产物池的快速同位素平衡和TCA循环中间体的慢标记动力学。通过可逆转氨酶反应与TCA循环相关联的大量谷氨酸和天冬氨酸可能是TCA循环中间体平衡延迟的原因。此外,据估计,星形胶质细胞摄取的11%的葡萄糖被转移到戊糖磷酸途径。此外,通过丙酮酸羧化酶[PC;PC/丙酮酸脱氢酶(PDH)比值= 0.5]、苹果酸酶(占总丙酮酸产量的5%)和支链氨基酸的分解代谢(占总乙酰辅酶a产量的约40%)证实了这些途径对星形细胞代谢的重要性。与维持细胞质氧化还原电位的需要一致,苹果酸-天冬氨酸穿梭和PDH途径的通量具有可比性。最后,估计谷氨酸/α-酮戊二酸交换速率(~ 0.7 μmol mg prot-1 h-1)与TCA循环通量相似。总之,这项工作证明了同位素瞬态MFA对能量代谢的综合分析的潜力。
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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