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The Sodium-Potassium Exchange Pump: Relation of Metabolism to Electrical Properties of the Cell

机译:钠钾交换泵:新陈代谢与细胞电特性的关系

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摘要

The Na-K exchange pump is represented as a net stoichiometrically coupled reaction, r, involving ATP, Na+, and K+, and is located in the active region of the cell membrane. The reaction rate is Jr = Lrr (-ΔFr), where ΔFr is the free energy change of the reaction. ΔFr includes membrane potential ø2 in the absence of 1:1 coupling between Na+ and K+, and the reaction rate is potential dependent under these conditions. At the same time the pump will produce a potential H which is the difference between membrane potential and the diffusion potential as calculated with constant field assumptions. In the absence of 1:1 coupling, the pump is electrogenic. The feedback relation between reaction rate and membrane potential makes the membrane resistance in the presence of the pump less than or equal to the resistance in its absence, at the same membrane potential. H depends on stoichiometry, reaction rate, and passive ionic conductances. Experimental verification of the model will depend on the accuracy of permeability determinations. Dissipation and efficiency of transport can be calculated also.
机译:Na-K交换泵表示为净化学计量耦合反应r,涉及ATP,Na + 和K + ,位于泵的活性区中。细胞膜。反应速率为Jr = Lrr(-ΔFr),其中ΔFr是反应的自由能变化。在Na + 和K + 之间不存在1:1偶联的情况下,ΔFr包括膜电势ø2,反应速率在这些条件下取决于电势。同时,泵将产生一个电势H,该电势H是膜电势与扩散电势之间的差,该电势H是根据恒定场假设计算得出的。在没有1:1耦合的情况下,泵是电动的。反应速率和膜电位之间的反馈关系使在泵存在下的膜电阻小于或等于在泵不存在时在相同膜电位下的膜电阻。 H取决于化学计量,反应速率和被动离子电导。模型的实验验证将取决于渗透率确定的准确性。也可以计算出耗散和运输效率。

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