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乌龟膀胱中与氢离子转运相关的代谢途径。

Metabolic pathways coupled to H+ transport in turtle urinary bladder.

作者信息

Kelly S, Dixon T E, Al-Awqati Q

出版信息

J Membr Biol. 1980 Jun 15;54(3):237-43. doi: 10.1007/BF01870240.

Abstract

Active H+ transport in the turtle urinary bladder is mediated by an ATPase. Although the source of ATP is usually mitochondrial oxidative phosphorylation, it is possible because of intracellular compartmentalization or cellular heterogeneity that one metabolic pathway exclusively provides ATP to the pump. To examine this we performed several types of experiments. In one, the coupling between the rate of transport and the rate of oxidation of 14C-labeled substrates was studied. We found that there was coupling between H+ transport and glucose, butyrate oleate, and beta-OH-butyrate oxidation. In another set of experiments we depleted turtle bladders of their endogenous substrates and tested the effect of a number of substrates on the rate of transport. We found that glucose, pyruvate, lactate, actetate, butyrate and beta-OH butyrate all stimulated H+ transport. In a third set of experiments we found no coupling between H+ transport and lactate production. Finally, we found that reduction of H+ transport by mucosal acidification resulted in an increase in epithelial cell ATP concentrations and a decrease in ADP levels. These results suggest that the H+ pump receives its ATP from carbohydrate and fatty acid oxidation. The changes in ATP and ADP levels provide an initial explanation for the coupling of H+ transport to the rate of cellular oxidative metabolism.

摘要

乌龟膀胱中的活性H⁺转运由一种ATP酶介导。尽管ATP的来源通常是线粒体氧化磷酸化,但由于细胞内的区室化或细胞异质性,有可能一种代谢途径专门为该泵提供ATP。为了对此进行研究,我们进行了几种类型的实验。在其中一个实验中,研究了转运速率与¹⁴C标记底物的氧化速率之间的偶联。我们发现H⁺转运与葡萄糖、丁酸盐、油酸盐和β-羟基丁酸盐的氧化之间存在偶联。在另一组实验中,我们耗尽了乌龟膀胱中的内源性底物,并测试了多种底物对转运速率的影响。我们发现葡萄糖、丙酮酸、乳酸、乙酸盐、丁酸盐和β-羟基丁酸盐均刺激H⁺转运。在第三组实验中,我们发现H⁺转运与乳酸生成之间没有偶联。最后,我们发现黏膜酸化导致H⁺转运减少,上皮细胞ATP浓度增加,ADP水平降低。这些结果表明,H⁺泵从碳水化合物和脂肪酸氧化中获取其ATP。ATP和ADP水平的变化为H⁺转运与细胞氧化代谢速率的偶联提供了初步解释。

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