Lauf P K, Zeidler R B, Kim H D
J Cell Physiol. 1984 Nov;121(2):284-90. doi: 10.1002/jcp.1041210204.
Influx of the K+ analogue Rb+ was measured through the ouabain-sensitive Na+/K+ pump and the ouabain-insensitive "leak" pathways in Cl- or NO3- in mature red cells from adult pigs and in reticulocytes naturally occurring in 7-day-old piglets. In reticulocytes, Rb+ influxes by the two pathways were of about equal magnitude in Cl- (13 and 10 mmoles/liter cells X hr) and at least 25-fold larger than in mature red cells (0.5 and 0.4 mmoles/liter cells X hr). In Na+ media, a portion of the ouabain-insensitive "leak" flux of Rb+ was Cl(-)-dependent (Rb+Cl- transport) as NO3- replacement reduced Rb+ influx by 90% in reticulocytes and by 40% in mature red cells. The sulfhydryl reagent N-ethylmaleimide (NEM) stimulated Rb+Cl- transport about twofold in reticulocytes and up to 13-fold in mature red cells. When reticulocytes matured to erythrocytes during in vitro incubation, about 90% of both ouabain-sensitive Rb+ pump and ouabain-insensitive Rb+Cl- influx were lost. In contrast, the NEM-stimulated Rb+Cl- transport changed much less throughout this period, suggesting an entity operationally but not necessarily structurally distinct from the basal Rb+Cl- transport. Although the experimental variability precluded a full assessment of significant changes in the small Na+/K+ (Rb+) pump and Rb+Cl- fluxes in mature pig red cells kept for the same time period in vitro, Rb+ flux changes in reticulocytes appear to be maturational in nature, reflecting parallel activity transitions of Na+/K+ pump and Cl(-)-dependent K+ fluxes in vivo.
通过哇巴因敏感的钠钾泵以及哇巴因不敏感的“渗漏”途径,测定了成年猪成熟红细胞以及7日龄仔猪自然存在的网织红细胞中钾离子类似物铷离子(Rb+)在氯离子(Cl-)或硝酸根离子(NO3-)中的流入情况。在网织红细胞中,氯离子中通过这两条途径的铷离子流入量大小相近(13和10毫摩尔/升细胞×小时),且至少比成熟红细胞中的大25倍(0.5和0.4毫摩尔/升细胞×小时)。在钠离子培养基中,铷离子的部分哇巴因不敏感“渗漏”通量依赖于氯离子(铷离子-氯离子转运),因为用硝酸根离子替代氯离子可使网织红细胞中的铷离子流入量减少90%,使成熟红细胞中的减少40%。巯基试剂N-乙基马来酰亚胺(NEM)可使网织红细胞中的铷离子-氯离子转运增加约两倍,使成熟红细胞中的增加多达13倍。当网织红细胞在体外培养过程中成熟为红细胞时,哇巴因敏感的铷离子泵和哇巴因不敏感的铷离子-氯离子流入量均损失约90%。相比之下,在此期间NEM刺激的铷离子-氯离子转运变化要小得多,这表明其在功能上与基础铷离子-氯离子转运不同,但结构上不一定不同。尽管实验变异性使得无法全面评估在体外保存相同时间段的成熟猪红细胞中,小的钠钾(铷)泵和铷离子-氯离子通量的显著变化,但网织红细胞中的铷离子通量变化似乎本质上是成熟过程中的变化,反映了体内钠钾泵和氯离子依赖性钾离子通量的平行活性转变。