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二氧化碳对人红细胞中阴离子交换温度依赖性的影响。

Effect of carbon dioxide on the temperature dependence of anion exchange in human red cells.

作者信息

Baker G F, Baker P

机构信息

School of Biological Sciences, Royal Holloway, University of London, Egham, Surrey, Great Britain.

出版信息

Cytobios. 1995;82(330):189-200.

PMID:7497739
Abstract

Anion exchange across the red cell membrane was studied by measuring the rate of shrinkage of cells when transferred from a medium of low pH to one of higher pH. Removal of trace amounts of CO2/bicarbonate from the media by degassing and the inhibition of carbonic anhydrase with 5 microM ethoxzolamide slowed the shrinkage rate. Arrhenius plots were linear over a temperature range of 40 degrees C, both in the presence of trace amounts of CO2/bicarbonate and in their absence, and gave an apparent activation energy for Cl- exchange of 73.9 +/- 8.9 kJ mole-1 when CO2 was present but this increased to 135.8 +/- 7.7 kJ mole-1 in its absence. From the results it is concluded that the lower value for the activation energy is determined by the rate of formation of bicarbonate ions while the high value represents hydroxyl:anion exchange and is a truer measure of the activation energy of the exchange process.

摘要

通过测量红细胞从低pH值介质转移到高pH值介质时的细胞收缩速率,研究了红细胞膜上的阴离子交换。通过脱气去除介质中的痕量二氧化碳/碳酸氢盐,并用5微摩尔乙氧唑胺抑制碳酸酐酶,减缓了收缩速率。在40摄氏度的温度范围内,无论是否存在痕量二氧化碳/碳酸氢盐,阿累尼乌斯图均呈线性。当存在二氧化碳时,氯离子交换的表观活化能为73.9±8.9千焦/摩尔,但在不存在二氧化碳时,该值增加到135.8±7.7千焦/摩尔。从结果可以得出结论,活化能的较低值由碳酸氢根离子的形成速率决定,而较高值代表羟基:阴离子交换,是交换过程活化能的更真实度量。

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