Hall A C, Ellory J C
J Membr Biol. 1985;85(3):205-13. doi: 10.1007/BF01871515.
The bumetanide-sensitive uptake of Na+, K+(Rb+) and Cl- has been measured at 21 degrees C in ferret red cells treated with (SITS + DIDS) to minimize anion flux via capnophorin (Band 3). During the time course of the influx experiments tracer uptake was a first-order rate process. At normal levels of external Na+ (150 mM) the bumetanide-sensitive uptake of K+ was dependent on Cl- and represented almost all of the K+ uptake, the residual flux demonstrating linear concentration dependence. The uptake of Na+ and Cl- was only partially inhibited by bumetanide indicating that pathways other than (Na + K + Cl) cotransport participate in these fluxes. The diuretic-sensitive uptake of Na+ or Cl- was, however, abolished by the removal of K+ or the complementary ion indicating that bumetanide-sensitive fluxes of Na+, K+ and Cl- are closely coupled. At very low levels of [Na]o (less than 5 mM) K+ influx demonstrated complex kinetics, and there was evidence of the unmasking of a bumetanide-sensitive Na+-independent K+ transport pathway. The stoichiometry of bumetanide-sensitive tracer uptake was 2Na:1K:3Cl both in cells suspended in a low and a high K+-containing medium. The bumetanide-sensitive flux was markedly reduced by ATP depletion. We conclude that a bumetanide-sensitive cotransport of (2Na:1K:3Cl) occurs as an electroneutral complex across the ferret red cell membrane.
在21摄氏度下,用(SITS + DIDS)处理雪貂红细胞,以尽量减少通过碳酸酐酶(带3)的阴离子通量,从而测量布美他尼敏感的Na⁺、K⁺(Rb⁺)和Cl⁻摄取。在流入实验的时间进程中,示踪剂摄取是一个一级速率过程。在正常的外部Na⁺(150 mM)水平下,布美他尼敏感的K⁺摄取依赖于Cl⁻,几乎代表了所有的K⁺摄取,残余通量显示出线性浓度依赖性。布美他尼仅部分抑制Na⁺和Cl⁻的摄取,表明除了(Na⁺ + K⁺ + Cl⁻)共转运之外的途径也参与了这些通量。然而,去除K⁺或互补离子会消除布美他尼敏感的Na⁺或Cl⁻摄取,这表明布美他尼敏感的Na⁺、K⁺和Cl⁻通量紧密耦合。在非常低的[Na]o水平(小于5 mM)下,K⁺流入表现出复杂的动力学,并且有证据表明一种布美他尼敏感的不依赖Na⁺的K⁺转运途径被暴露。在悬浮于低钾和高钾培养基中的细胞中,布美他尼敏感的示踪剂摄取化学计量比均为2Na:1K:3Cl。ATP耗竭会显著降低布美他尼敏感的通量。我们得出结论,(2Na:1K:3Cl)的布美他尼敏感共转运以电中性复合物的形式穿过雪貂红细胞膜。