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肝细胞糖异生、尿素合成及能量代谢对细胞内pH值的依赖性。

Dependence of gluconeogenesis, urea synthesis, and energy metabolism of hepatocytes on intracellular pH.

作者信息

Kashiwagura T, Deutsch C J, Taylor J, Erecińska M, Wilson D F

出版信息

J Biol Chem. 1984 Jan 10;259(1):237-43.

PMID:6323402
Abstract

The relationship of intracellular pH to extracellular pH has been measured in suspensions of isolated hepatocytes at 25 degrees C. The internal pH was found to be a linear function of external pH and it changed by 0.45 pH unit per 1.0 unit change in external pH. The internal [H+] was equal to the external [H+] at approximately pH 7.1. Gluconeogenesis, urea synthesis, and oxidative phosphorylation showed different dependencies on the intracellular pH. Gluconeogenesis was the most sensitive to changes in [H+] and it declined by 80% when the intracellular pH decreased from 7.1 to 6.9. Urea synthesis was less pH-dependent, decreasing by about 30% for the same change in the intracellular [H+] whereas respiratory rate showed very little dependence on pH at this temperature. Intracellular [ATP]/[ADP] decreased linearly from 8.5 to 1.5 as the intracellular pH increased from 6.8 to 7.6, while intracellular [Pi] was essentially constant at 3.2 nmol/mg of cells, wet weight. Cytochrome c became more reduced with increasing intracellular pH, from less than 10% at pH 6.8 to 35% at pH 7.7. The calculated free energy of hydrolysis of ATP was nearly independent of pH as was the free energy of electron transfer from the intramitochondrial NAD couple (calculated from the [acetoacetate]/[3-OH-butyrate] ratio) to cytochrome c.

摘要

在25摄氏度下,对分离的肝细胞悬液中细胞内pH与细胞外pH的关系进行了测定。发现细胞内pH是细胞外pH的线性函数,细胞外pH每变化1.0个单位,细胞内pH变化0.45个pH单位。在大约pH 7.1时,细胞内[H⁺]等于细胞外[H⁺]。糖异生、尿素合成和氧化磷酸化对细胞内pH表现出不同的依赖性。糖异生对[H⁺]变化最为敏感,当细胞内pH从7.1降至6.9时,其下降了80%。尿素合成对pH的依赖性较小,细胞内[H⁺]发生相同变化时,其下降约30%,而在此温度下呼吸速率对pH的依赖性很小。随着细胞内pH从6.8升至7.6,细胞内[ATP]/[ADP]从8.5线性降至1.5,而细胞内[Pi]基本恒定在3.2 nmol/mg细胞湿重。随着细胞内pH升高,细胞色素c的还原程度增加,从pH 6.8时的不到10%增至pH 7.7时的35%。计算得出的ATP水解自由能几乎与pH无关,从线粒体内NAD偶联物(根据[乙酰乙酸]/[3-羟基丁酸]比值计算)到细胞色素c的电子转移自由能也是如此。

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