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肝细胞中氧气浓度的梯度。

Gradients of O2 concentration in hepatocytes.

作者信息

Jones D P, Mason H S

出版信息

J Biol Chem. 1978 Jul 25;253(14):4874-80.

PMID:209020
Abstract
  1. Cytochrome P/450-dependent mixed function oxidations of hexobarbital, phenyramidol, and alprenolol in intact hepatocytes were examined at different steady state oxygen concentrations. Apparent Kmo2 values were determined to be 6.4 +/- 1.7, 3.6 +/- 0.6, and 9.8 +/- 1.2 micronM, respectively. 2. Apparent Kmo2 values for metabolism of hexobarbital and alprenolol by liver microsomes were 4.3 +/- 0.4 and 8.7 +/- 0.7 micronM, similar to the corresponding values for whole cells. Therefore, no detectable gradient of O2 concentration exists between extracellular space and endoplasmic reticulum of hepatocytes at these oxygen concentrations. 3. Steady state concentrations of ATP, ADP, AMP, lactate, and pyruvate at different steady state oxygen concentrations were used as indicators of mitochondrial oxygen dependence in intact hepatocytes. Half-maximal changes occurred at [O2] = 12.6 micronM for cytoplasmic [NAD+]/[NADH] (estimated from [lactate]/[pyruvate]), at 7.0 micronM for [ATP]/[ADP], and at 2.8 micronM for adenylate energy charge. The apparent cellular respiratory Kmo2 was 1.90 +/- 0.18 micronM. 4. Comparison of values for oxygen dependence of mitochondrial functions in isolated hepatocytes with published values for isolated mitochondria suggests that a substantial intracellular oxygen gradient exists between the outer cellular membrane and the mitochondrial inner membrane at po2 values below the critical O2 tensions.
摘要
  1. 在不同的稳态氧浓度下,检测了完整肝细胞中细胞色素P450依赖的己巴比妥、苯甲吗啉和烯丙洛尔的混合功能氧化反应。确定表观Kmo2值分别为6.4±1.7、3.6±0.6和9.8±1.2微摩尔。2. 肝微粒体对己巴比妥和烯丙洛尔代谢的表观Kmo2值分别为4.3±0.4和8.7±0.7微摩尔,与全细胞的相应值相似。因此,在这些氧浓度下,肝细胞的细胞外空间与内质网之间不存在可检测到的氧浓度梯度。3. 在不同的稳态氧浓度下,ATP、ADP、AMP、乳酸和丙酮酸的稳态浓度被用作完整肝细胞中线粒体氧依赖性的指标。细胞质中[NAD+]/[NADH](根据[乳酸]/[丙酮酸]估算)在[O2]=12.6微摩尔时发生半数最大变化,[ATP]/[ADP]在7.0微摩尔时发生变化,腺苷酸能荷在2.8微摩尔时发生变化。表观细胞呼吸Kmo2为1.90±0.18微摩尔。4. 将分离肝细胞中线粒体功能的氧依赖性值与已发表的分离线粒体的值进行比较,结果表明,在低于临界氧张力的po2值下,细胞膜外与线粒体内膜之间存在显著的细胞内氧梯度。

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