Miccoli L, Oudard S, Sureau F, Poirson F, Dutrillaux B, Poupon M F
Laboratoire de Cytogénétique Moléculaire et Oncologie (UMR 147), CNRS-Institut Curie, Paris, France.
Biochem J. 1996 Feb 1;313 ( Pt 3)(Pt 3):957-62. doi: 10.1042/bj3130957.
Hexokinase plays a key role in regulating cell energy metabolism. Hexokinase is mainly particulate, bound to the mitochondrial outer membrane in brain and tumour cells. We hypothesized that the intracellular pH (pH1) controls the intracellular distribution of hexokinase. Using the SNB-19 glioma cell line, pH1 variations were imposed by incubating cells in a high-K+ medium at different pH values containing specific ionophores (nigericin and valinomycin), without affecting cell viability. Subcellular fractions of cell homogenates were analysed for hexokinase activity. Imposed pH1 changes were verified microspectrofluorimetrically by using the pH1-sensitive probe SNARF-1-AM (seminaphtho-rhodafluor-1-acetoxymethyl ester). Imposition of an acidic pH1 for 30 min strongly decreased the particulate/total hexokinase ratio, from 63% in the control sample to 31%. Conversely, when a basic pH1, was imposed, the particulate/total hexokinase ratio increased to 80%. The glycolytic parameters, namely lactate/pyruvate ratio, glucose 6-phosphate and ATP levels, were measured concomitantly. Lactate/pyruvate ratio and ATP level were both markedly decreased by acidic pH1 and increased by basic pH1. Conversely, the glucose 6-phosphate level was increased by acidic pH1 and decreased by basic pH1. To demonstrate that the change of hexokinase distribution was not due to altered metabolite levels of glycolysis, a pH1 was imposed for a 5 min incubation time. Modification of the hexokinase distribution was similar to that noted after a 30 min incubation, whereas metabolite levels of glycolysis were not affected. These results provide evidence that the intracellular distribution of hexokinase is highly sensitive to variations of the pH1, and regulates hexokinase activity.
己糖激酶在调节细胞能量代谢中起关键作用。己糖激酶主要呈颗粒状,在脑和肿瘤细胞中与线粒体外膜结合。我们推测细胞内pH值(pH1)控制着己糖激酶的细胞内分布。使用SNB - 19胶质瘤细胞系,通过在含有特定离子载体(尼日利亚菌素和缬氨霉素)的不同pH值的高钾培养基中孵育细胞来改变pH1,且不影响细胞活力。分析细胞匀浆的亚细胞组分中的己糖激酶活性。使用对pH1敏感的探针SNARF - 1 - AM(半萘并罗丹明 - 1 - 乙酰氧基甲酯)通过显微荧光分光光度法验证施加的pH1变化。施加酸性pH1 30分钟会强烈降低颗粒状/总己糖激酶比率,从对照样品中的63%降至31%。相反,当施加碱性pH1时,颗粒状/总己糖激酶比率增加到80%。同时测量糖酵解参数,即乳酸/丙酮酸比率、6 - 磷酸葡萄糖和ATP水平。酸性pH1使乳酸/丙酮酸比率和ATP水平均显著降低,碱性pH1则使其升高。相反,酸性pH1使6 - 磷酸葡萄糖水平升高,碱性pH1使其降低。为了证明己糖激酶分布的变化不是由于糖酵解代谢物水平改变所致,施加pH1孵育5分钟。己糖激酶分布的改变与孵育30分钟后观察到的相似,而糖酵解代谢物水平未受影响。这些结果证明己糖激酶的细胞内分布对pH1的变化高度敏感,并调节己糖激酶活性。