Coplon N S, Steele R E, Maffly R H
J Membr Biol. 1977 Jun 6;34(2-3):289-312. doi: 10.1007/BF01870305.
Active sodium transport and CO2 production were measured simultaneously in toad bladders mounted in membrane chambers. The rate of sodium transport was varied by changing the concentration of sodium in the mucosal bath (substitution with choline), by adding vasopressin, by adding metabolic substrates and by adding malonate, and the ratio of the change of sodium transport and CO2 production was determined Mean values for deltaNa/deltaCO2 (equiv/mole) were: Na in equilibrium choline 18.3 +/- 1.1; vasopressin 15.5 +/- 2.8; and pyruvate (corrected for the increment in "nontransport" CO2) 15.4 +/- 3.5. Based on previously determined values for the respiratory quotient (R.Q.), calculated mean values for deltaNa/deltaO2 ranged between 15.5 and 18.5 equiv/mole. It appears that basal metabolism does not contribute to metabolism supporting sodium transport when the rate of sodium transport is varied. "Transport" metabolism appears much more responsive to changes in the availability of endogenous and exogenous substrates than does "nontransport" metabolism. We conclude that "transport" and "nontransport" metabolism are functionally separated in the toad bladder.
在安装于膜室中的蟾蜍膀胱中同时测量了活性钠转运和二氧化碳产生情况。通过改变黏膜浴中钠的浓度(用胆碱替代)、添加血管加压素、添加代谢底物以及添加丙二酸来改变钠转运速率,并确定钠转运变化与二氧化碳产生变化的比值。δNa/δCO2(当量/摩尔)的平均值为:平衡胆碱中的钠为18.3±1.1;血管加压素为15.5±2.8;丙酮酸(校正“非转运”二氧化碳的增加量)为15.4±3.5。根据先前确定的呼吸商(R.Q.)值,计算出的δNa/δO2平均值在15.5至18.5当量/摩尔之间。当钠转运速率变化时,基础代谢似乎对支持钠转运的代谢没有贡献。“转运”代谢对外源和内源性底物可用性变化的反应似乎比“非转运”代谢更敏感。我们得出结论,蟾蜍膀胱中的“转运”和“非转运”代谢在功能上是分离的。