Soltoff S P, Mandel L J
J Gen Physiol. 1984 Oct;84(4):623-42. doi: 10.1085/jgp.84.4.623.
The dependence of Na pump activity on intracellular and extracellular Na+ and K+ was investigated using a suspension of rabbit cortical tubules that contained mostly (86%) proximal tubules. The ouabain-sensitive rate of respiration (QO2) was used to measure the Na pump activity of intact tubules, and the Na,K-ATPase hydrolytic activity was measured using lysed proximal tubule membranes. The dependence (K0.5) of the Na pump on intracellular Na+ was affected by the relative intracellular concentration of K+, ranging from approximately 10 to 15 mM at low K+ and increasing to approximately 30 mM as the intracellular K+ was increased. The Na pump had a K0.5 for extracellular K+ of 1.3 mM in the presence of saturating concentrations of intracellular Na+. Measurements of the Na,K-ATPase activity under comparable conditions rendered similar values for the K0.5 of Na+ and K+. The Na pump activity in the intact tubules saturated as a function of extracellular Na at approximately 80 mM Na, with a K0.5 of 30 mM. Since Na pump activity under these conditions could be further stimulated by increasing Na+ entry with the cationophore nystatin, these values pertain to the Na+ entry step and not to the Na+ dependence of the intracellular Na+ site. When tubules were exposed to different extracellular K+ concentrations and the intracellular Na+ concentration was subsaturating, the Na pump had an apparent K0.5 of 0.4 mM for extracellular K. Under normal physiological conditions, the Na pump is unsaturated with respect to intracellular Na+, and indirect analysis suggests that the proximal cell may have an intracellular Na+ concentration of approximately 35 mM.
利用主要由近端小管(86%)组成的兔皮质小管悬浮液,研究了钠泵活性对细胞内和细胞外钠(Na⁺)及钾(K⁺)的依赖性。哇巴因敏感的呼吸速率(QO₂)用于测量完整小管的钠泵活性,钠钾ATP酶水解活性则使用裂解的近端小管膜进行测量。钠泵对细胞内Na⁺的依赖性(K₀.₅)受细胞内K⁺相对浓度的影响,在低钾浓度时约为10至15 mM,随着细胞内K⁺浓度增加至约30 mM。在细胞内Na⁺饱和浓度存在的情况下,钠泵对细胞外K⁺的K₀.₅为1.3 mM。在可比条件下测量钠钾ATP酶活性得出的Na⁺和K⁺的K₀.₅值相似。完整小管中的钠泵活性在细胞外Na约为80 mM时随细胞外Na浓度饱和,K₀.₅为30 mM。由于在这些条件下钠泵活性可通过用离子载体制霉菌素增加Na⁺内流而进一步受到刺激,所以这些值与Na⁺内流步骤有关,而非与细胞内Na⁺位点的Na⁺依赖性有关。当小管暴露于不同的细胞外K⁺浓度且细胞内Na⁺浓度不饱和时,钠泵对细胞外K的表观K₀.₅为0.4 mM。在正常生理条件下,钠泵对细胞内Na⁺不饱和,间接分析表明近端细胞的细胞内Na⁺浓度可能约为35 mM。