首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >On the concept of resting potential - Pumping ratio of the Na +/K+ pump and concentration ratios of potassium ions outside and inside the cell to sodium ions inside and outside the cell
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On the concept of resting potential - Pumping ratio of the Na +/K+ pump and concentration ratios of potassium ions outside and inside the cell to sodium ions inside and outside the cell

机译:关于静息电位的概念-Na + / K +泵的泵浦比以及电池内外的钾离子与电池内外的钠离子的浓度比

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In animal cells, the resting potential is established by the concentration gradients of sodium and potassium ions and the different permeabilities of the cell membrane to them. The large concentration gradients of sodium and potassium ions are maintained by the Na+/K+ pump. Under physiological conditions, the pump transports three sodium ions out of and two potassium ions into the cell per ATP hydrolyzed. However, unlike other primary or secondary active transporters, the Na+/K+ pump does not work at the equilibrium state, so the pumping ratio is not a thermodynamic property of the pump. In this article, I propose a dipole-charging model of the Na+/K+ pump to prove that the three Na+ to two K+ pumping ratio of the Na+/K+ pump is determined by the ratio of the ionic mobilities of potassium to sodium ions, which is to ensure the time constant τ and the τ-dependent processes, such as the normal working state of the Na+/K+ pump and the propagation of an action potential. Further, the concentration ratios of potassium ions outside and inside the cell to sodium ions inside and outside the cell are 0.3027 and 0.9788, respectively, and the sum of the potassium and sodium equilibrium potentials is -30.3 mV. A comparative study on these constants is made for some marine, freshwater and terrestrial animals. These findings suggest that the pumping ratio of the Na+/K+ pump and the ion concentration ratios play a role in the evolution of animal cells.
机译:在动物细胞中,静息电位是由钠和钾离子的浓度梯度以及细胞膜对它们的不同渗透性建立的。 Na + / K +泵可保持较大的钠离子和钾离子浓度梯度。在生理条件下,每水解一次ATP,泵将三个钠离子运出,两个钾离子运入细胞。但是,与其他主要或次要主动转运蛋白不同,Na + / K +泵在平衡状态下不工作,因此泵送比不是泵的热力学性质。在本文中,我提出了Na + / K +泵的偶极充电模型,以证明Na + / K +泵的三个Na +与两个K +的泵送比是由钾离子与钠离子的离子迁移率之比决定的,这是为了确保时间常数τ和依赖于τ的过程,例如Na + / K +泵的正常工作状态以及动作电位的传播。此外,细胞外和细胞内钾离子与细胞内和细胞外钠离子的浓度比分别为0.3027和0.9788,钾和钠平衡电位之和为-30.3mV。对一些海洋,淡水和陆生动物的这些常数进行了比较研究。这些发现表明Na + / K +泵的泵送比和离子浓度比在动物细胞的进化中起作用。

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