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镰状细胞中脱氧诱导的阳离子通量:净钾外流与净钠内流之间的关系。

Deoxygenation-induced cation fluxes in sickle cells: relationship between net potassium efflux and net sodium influx.

作者信息

Joiner C H, Dew A, Ge D L

机构信息

Department of Pediatrics, University of Alabama School of Medicine, Birmingham.

出版信息

Blood Cells. 1988;13(3):339-58.

PMID:3382745
Abstract

Deoxygenation-induced cation fluxes in sickle cells were studied by measuring net cation movements in ouabain-treated cells. These deoxy cation fluxes were highly dependent on pH, showing inhibition at pH less than 7 and greater than 8 and a maximum at 7.4-7.5. Activation occurred at oxygen tensions around 40-50 torr and fluxes rose sharply as PO2 fell lower. Deoxy K efflux paralleled deoxy Na influx at pH values between 7 and 8, and at all oxygen tensions. Sickle cells were separated by density on Percol-Stractan gradients. Dense cells had lower deoxy cation fluxes of both Na and K than did lighter cell fractions, but in none of the fractionated populations did deoxy K efflux exceed deoxy Na influx. These data demonstrate that deoxy cation fluxes are activated at physiological pH and oxygen tensions and that there are no conditions of pH and PO2 and no cell populations in which cation fluxes induced by deoxygenation contribute directly to net cation loss in sickle cells. Chloride replacement (with nitrate) did not alter deoxy cation fluxes, and deoxy K efflux did not require the presence of external Na (tetramethylammonium replacement). Thus, deoxy cation fluxes do not have the characteristics of a cation-chloride cotransport or cation countertransport system.

摘要

通过测量哇巴因处理细胞中的净阳离子移动,研究了镰状细胞中脱氧诱导的阳离子通量。这些脱氧阳离子通量高度依赖于pH值,在pH小于7和大于8时受到抑制,在7.4 - 7.5时达到最大值。在氧分压约为40 - 50托时发生激活,随着PO2降低,通量急剧上升。在pH值介于7和8之间以及所有氧分压下,脱氧钾外流与脱氧钠内流平行。镰状细胞通过在Percol - Stractan梯度上的密度进行分离。密度较大的细胞中钠和钾的脱氧阳离子通量均低于较轻的细胞组分,但在任何分级群体中,脱氧钾外流均未超过脱氧钠内流。这些数据表明,脱氧阳离子通量在生理pH值和氧分压下被激活,并且不存在pH值和PO2条件以及细胞群体,其中脱氧诱导的阳离子通量直接导致镰状细胞中的净阳离子损失。氯离子替代(用硝酸盐)不会改变脱氧阳离子通量,并且脱氧钾外流不需要外部钠的存在(用四甲基铵替代)。因此,脱氧阳离子通量不具有阳离子 - 氯离子共转运或阳离子逆向转运系统的特征。

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