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细胞水和离子调节中的阳离子-氯离子共转运体、钠钾泵及通道:U937细胞在泵阻断及调节性容积减小过程中的实验研究

Cation-Chloride Cotransporters, Na/K Pump, and Channels in Cell Water and Ion Regulation: and Experimental Studies of the U937 Cells Under Stopping the Pump and During Regulatory Volume Decrease.

作者信息

Yurinskaya Valentina E, Vereninov Alexey A

机构信息

Laboratory of Cell Physiology, Institute of Cytology, Russian Academy of Sciences, St-Petersburg, Russia.

出版信息

Front Cell Dev Biol. 2021 Nov 16;9:736488. doi: 10.3389/fcell.2021.736488. eCollection 2021.

Abstract

Cation-coupled chloride cotransporters play a key role in generating the Cl electrochemical gradient on the cell membrane, which is important for regulation of many cellular processes. However, a quantitative analysis of the interplay between numerous membrane transporters and channels in maintaining cell ionic homeostasis is still undeveloped. Here, we demonstrate a recently developed approach on how to predict cell ionic homeostasis dynamics when stopping the sodium pump in human lymphoid cells U937. The results demonstrate the reliability of the approach and provide the first quantitative description of unidirectional monovalent ion fluxes through the plasma membrane of an animal cell, considering all the main types of cation-coupled chloride cotransporters operating in a system with the sodium pump and electroconductive K, Na, and Cl channels. The same approach was used to study ionic and water balance changes associated with regulatory volume decrease (RVD), a well-known cellular response underlying the adaptation of animal cells to a hypoosmolar environment. A computational analysis of cell as an electrochemical system demonstrates that RVD may happen without any changes in the properties of membrane transporters and channels due to time-dependent changes in electrochemical ion gradients. The proposed approach is applicable when studying truly active regulatory processes mediated by the intracellular signaling network. The developed software can be useful for calculation of the balance of the unidirectional fluxes of monovalent ions across the cell membrane of various cells under various conditions.

摘要

阳离子偶联氯离子共转运体在产生细胞膜上的氯离子电化学梯度方面发挥着关键作用,这对许多细胞过程的调节至关重要。然而,对于众多膜转运体和通道在维持细胞离子稳态中的相互作用的定量分析仍未得到充分发展。在这里,我们展示了一种最近开发的方法,用于预测在人淋巴细胞U937中停止钠泵时细胞离子稳态的动态变化。结果证明了该方法的可靠性,并首次对动物细胞质膜上单向单价离子通量进行了定量描述,考虑了在与钠泵以及导电的钾、钠和氯通道一起运行的系统中起作用的所有主要类型的阳离子偶联氯离子共转运体。同样的方法被用于研究与调节性容积减小(RVD)相关的离子和水平衡变化,RVD是动物细胞适应低渗环境的一种众所周知的细胞反应。对作为电化学系统的细胞进行的计算分析表明,由于电化学离子梯度随时间的变化,RVD可能在膜转运体和通道特性没有任何变化的情况下发生。所提出的方法适用于研究由细胞内信号网络介导的真正活跃的调节过程。开发的软件可用于计算在各种条件下不同细胞的质膜上单价离子单向通量的平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee5c/8635019/59aec671036d/fcell-09-736488-g001.jpg

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