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Kinetics and stoichiometry of Na-dependent Li transport in human red blood cells

机译:人红细胞中钠依赖性锂转运的动力学和化学计量

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摘要

This paper describes the kinetics and stoichiometry of a tightly coupled Na-Li exchange transport system in human red cells. The system is inhibited by phloretin and furosemide but not by ouabain. Li influx by this system increases and saturates with increasing concentrations of external Li and internal Na and is inhibited competitively by external Na. Comparable functions relate Li efflux and Na efflux to internal and external Li and Na concentrations. Analysis of these relations yields the following values for the ion concentrations required to half-maximally activate the transport system: internal Na and Li 9.0 and 0.5 mM, respectively, external Na and Li 25 and 1.5 mM, respectively. The system performs a 1:1 exchange of Na and Li moving in opposite directions across the red cell membrane. We found no evidence for a simultaneous transport of more than one Na and Li by the system. The maximum transport rate of Na-dependent Li transport varied between 0.1 and 0.37 mmol/(liter of cells X h) in the red cells of the five normal male subjects studied. No significant variations between individual subjects were observed for bicarbonate-stimulated Li transport and for the residual Li fluxes which occur in the absence of bicarbonate and in the presence of ouabain plus phloretin.
机译:本文描述了人类红细胞中紧密耦合的Na-Li交换转运系统的动力学和化学计量。该系统受叶绿素和速尿抑制,但不被哇巴因抑制。随着外部Li和内部Na浓度的增加,通过该系统流入的Li会增加并饱和,并且会受到外部Na竞争性地抑制。可比较的功能将Li外排和Na外排与内部和外部Li和Na浓度相关。通过分析这些关系,可以得出最大程度激活传输系统所需的离子浓度的以下值:内部Na和Li分别为9.0和0.5 mM,外部Na和Li为25和1.5 mM。该系统执行Na和Li的1:1交换,它们沿红细胞膜的相反方向移动。我们发现没有证据表明该系统可以同时运输多个Na和Li。在五个研究的正常男性受试者的红细胞中,Na依赖的Li转运的最大转运速率在0.1和0.37 mmol /(升细胞X h)之间变化。碳酸氢盐刺激的锂转运和残留的锂通量在各个受试者之间均未观察到显着变化,这在不存在碳酸氢盐时,在哇巴因加伞菌素存在下发生。

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