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Balance of Na , K , and Cl– Unidirectional Fluxes in Normal and Apoptotic U937 Cells Computed With All Main Types of Cotransporters

机译:Na,K和Na,K和Cl-单向助熔剂的正常和凋亡U937细胞,用所有主要类型的Cotroanger计算

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Fluxes of monovalent ions through the multiple pathways of the plasma membrane are highly interdependent, and their assessment by direct measurement is difficult or even impossible. Computation of the entire flux balance helps to identify partial flows and study the functional expression of individual transporters. Our previous computation of unidirectional fluxes in real cells ignored the ubiquitous cotransporters NKCC and KCC. Here we present an analysis of the entire balance of unidirectional Na , K , Cl– fluxes through the plasma membrane in human lymphoid U937 cells taking into account not only the Na/K pump and electroconductive channels but all major types of cotransporters NC, NKCC, and KCC. Our calculations use flux equations based on the fundamental principles of macroscopic electroneutrality of the system, water balance, and the generally accepted thermodynamic dependence of ion fluxes on the driving force, and they do not depend on hypotheses about the molecular structure of the channel and transporters. A complete list of the major inward and outward Na , K , Cl– fluxes is obtained for human lymphoid U937 cells at rest and during changes in the ion and water balance for the first 4 h of staurosporine-induced apoptosis. It is shown how the problem of the inevitable multiplicity of solutions to the flux equations, which arises with an increase in the number of ion pathways, can be solved in real cases by analyzing the ratio of ouabain-sensitive and ouabain-resistant parts of K (Rb ) influx (OSOR) and using additional experimental data on the effects of specific inhibitors. It is found that dynamics of changes in the membrane channels and transporters underlying apoptotic changes in the content of ions and water in cells, calculated without taking into account the KCC and NKCC cotransporters, differs only in details from that calculated for cells with KCC and NKCC. The developed approach to assessment of unidirectional fluxes may be useful for understanding functional expression of ion channels and transporters in other cells under various conditions. Attached software allows to reproduce all calculated data under presented conditions and to study the effects of the condition variation.
机译:通过质膜的多种途径通过多价离子的通量非常相互依赖,并且它们通过直接测量的评估是难以甚至不可能的。整个磁通量的计算有助于识别部分流动并研究单个转运仪的功能表达。我们以前的真实细胞单向助焊剂计算忽略了无处不在的Cotoransporters NKCC和KCC。在这里,我们展现了通过在人淋巴U937细胞中的血浆膜中的血浆膜的整个平衡的分析,考虑到Na / K泵和导电通道,而是所有主要类型的Cotroansporters NC,NKCC,和KCC。我们的计算基于系统,水平衡的宏观电气关系的基本原理使用助焊剂方程,以及在驱动力上的离子通量的普遍接受的热力学依赖性,它们不依赖于通道和转运蛋白的分子结构的假设。在休息的人淋巴u937细胞和在铁路孢子诱导的细胞凋亡的前4小时的离子和水平衡变化期间,为人淋巴u937细胞提供完整的主题和向外Na,K,Cl-助熔剂的完整列表。示出了通过分析k的比率和k的耐纹抗性部分的比例,可以在实际情况下在实际情况下解决与离子通路数量增加的不可避免的多种解决方案的问题。 (RB)流入(OSOR)并使用其他实验数据关于特异性抑制剂的影响。发现膜通道和转运蛋白在细胞中离子和水中含量的凋亡变化的变化的动态,而不考虑KCC和NKCC COTRANSPORTER,仅涉及与KCC和NKCC的细胞计算的细节不同。评估单向助熔剂的发育方法可用于在各种条件下了解在其他细胞中的离子通道和转运蛋白的功能表达。附加的软件允许在呈现的条件下再现所有计算的数据,并研究条件变化的影响。

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