Fonseca Carla P, Jones John G, Carvalho Rui A, Jeffrey F Mark H, Montezinho Liliana P, Geraldes Carlos F G C, Castro M M C A
Department of Biochemistry, NMR Center and Center for Neuroscience and Cell Biology, University of Coimbra, P.O. Box 3126, 3001-401 Coimbra, Portugal.
Neurochem Int. 2005 Nov;47(6):385-93. doi: 10.1016/j.neuint.2005.06.005.
Li+ effects on glucose metabolism and on the competitive metabolism of glucose and lactate were investigated in the human neuroblastoma SH-SY5Y cell line using 13C NMR spectroscopy. The metabolic model proposed for glucose and lactate metabolism in these cells, based on tcaCALC best fitting solutions, for both control and Li+ conditions, was consistent with: (i) a single pyruvate pool; (ii) anaplerotic flux from endogenous unlabelled substrates; (iii) no cycling between pyruvate and oxaloacetate. Li+ was shown to induce a 38 and 53% decrease, for 1 and 15 mM Li+, respectively, in the rate of glucose conversion into pyruvate, when [U-13C]glucose was present, while no effects on lactate production were observed. Pyruvate oxidation by the tricarboxylic acid cycle and citrate synthase flux were shown to be significantly reduced by 64 and 84% in the presence of 1 and 15 mM Li+, respectively, suggesting a direct inhibitory effect of Li+ on tricarboxylic acid cycle flux. This work also showed that when both glucose and lactate are present as energetic substrates, SH-SY5Y cells preferentially consumed exogenous lactate over glucose, as 62% of the acetyl-CoA was derived from [3-13C]lactate while only 26% was derived from [U-13C]glucose. Li+ did not significantly affect the relative utilisation of these two substrates by the cells or the residual contribution of unlabelled endogenous sources for the acetyl-CoA pool.
利用¹³C核磁共振波谱技术,在人神经母细胞瘤SH - SY5Y细胞系中研究了Li⁺对葡萄糖代谢以及葡萄糖与乳酸竞争性代谢的影响。基于tcaCALC最佳拟合解,针对对照和Li⁺处理条件下这些细胞中葡萄糖和乳酸代谢提出的代谢模型与以下情况一致:(i)单个丙酮酸池;(ii)来自内源性未标记底物的回补通量;(iii)丙酮酸和草酰乙酸之间无循环。当存在[U - ¹³C]葡萄糖时,Li⁺分别在1 mM和15 mM Li⁺浓度下使葡萄糖转化为丙酮酸的速率降低了38%和53%,而未观察到对乳酸生成有影响。在1 mM和15 mM Li⁺存在时,三羧酸循环介导的丙酮酸氧化和柠檬酸合酶通量分别显著降低了64%和84%,表明Li⁺对三羧酸循环通量有直接抑制作用。这项研究还表明,当葡萄糖和乳酸均作为能量底物存在时,SH - SY5Y细胞优先消耗外源乳酸而非葡萄糖,因为62%的乙酰辅酶A来自[3 - ¹³C]乳酸,而只有26%来自[U - ¹³C]葡萄糖。Li⁺对细胞对这两种底物的相对利用或乙酰辅酶A池未标记内源性来源的剩余贡献没有显著影响。