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人体红细胞中的氯/碳酸氢根交换

Chloride/bicarbonate exchange in human erythrocytes.

作者信息

Lambert A, Lowe A G

出版信息

J Physiol. 1978 Feb;275:51-63. doi: 10.1113/jphysiol.1978.sp012177.

Abstract
  1. The exchange of chloride and bicarbonate across the human erythrocyte membrane has been followed by measuring the changes in extracellular pH which occur when chloride-rich erythrocytes are added to chloride-free media containing varying concentrations of bicarbonate and carbonic anhydrase. 2. The dependence of the rate of chloride/bicarbonate exchange on the extracellular concentration of bicarbonate was consistent with the existence of a saturable membrane anion transporter exhibiting Michaelis--Menten kinetics. In a medium containing sodium gluconate buffered to pH 7.0 with imidazole--malate the Km for bicarbonate activation of transport was 0.39 (+/- 0.03) mM and the Vmax was 2033 (+/- 80 m-mole anions exchanged/3 X 10(13) cells. min, at 10 degrees C. 3. Chloride/bicarbonate exchange was temperature-dependent with an Arrhenius activation energy of 19.4 kcal/mole in the temperature range 2--10 degrees C. 4. Exchange of intracellular chloride for extracellular bicarbonate was inhibited by the presence of extracellular halides. Inhibition by chloride, bromide and fluoride was competitive and the affinity of the transport system decreased in the order HCO-3 greater than Cl- greater than Br- greater than F-. The kinetics of inhibition by iodide were complex, but inhibitory effects of low concentrations of iodide were less than those of chloride and bromide.
摘要
  1. 通过测量将富含氯离子的红细胞添加到含有不同浓度碳酸氢盐和碳酸酐酶的无氯介质中时细胞外pH值的变化,跟踪了氯离子和碳酸氢根在人红细胞膜上的交换。2. 氯离子/碳酸氢根交换速率对细胞外碳酸氢盐浓度的依赖性与存在呈现米氏动力学的可饱和膜阴离子转运体一致。在含有用咪唑-苹果酸缓冲至pH 7.0的葡萄糖酸钠的介质中,转运的碳酸氢盐激活的Km为0.39(±0.03)mM,Vmax为2033(±80 m-摩尔阴离子交换/3×10¹³个细胞·分钟,在10℃时)。3. 氯离子/碳酸氢根交换是温度依赖性的,在2-10℃温度范围内的阿累尼乌斯活化能为19.4千卡/摩尔。4. 细胞内氯离子与细胞外碳酸氢根的交换受到细胞外卤化物的抑制。氯离子、溴离子和氟离子的抑制是竞争性的,转运系统的亲和力按HCO₃⁻>Cl⁻>Br⁻>F⁻的顺序降低。碘离子抑制的动力学很复杂,但低浓度碘离子的抑制作用小于氯离子和溴离子。

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Chloride/bicarbonate exchange in human erythrocytes.人体红细胞中的氯/碳酸氢根交换
J Physiol. 1978 Feb;275:51-63. doi: 10.1113/jphysiol.1978.sp012177.

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