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[腹水肿瘤细胞中单价阳离子转运的能量特征]

[Energy characteristics of the transport of monovalent cations in ascites tumor cells].

作者信息

Kaz'min S D, Danko I M

出版信息

Biokhimiia. 1986 Jan;51(1):95-102.

PMID:3006802
Abstract

The intensity of O2 adsorption by ascite tumour cells does not practically depend on the monovalent cation concentration gradient between the cells and the incubation medium, whereas the rate of glycolysis decreases simultaneously with the diminution of the concentration gradient. In synchronized cultures at the beginning of the mitotic cycle, the bulk of ATP resynthesized via glycolysis is utilized for the synthesis of biopolymers, whereas that at the end of the S-phase and in the G2-phase--for cation transport across plasma membranes. From 35 to 100% of the whole amount of ATP resynthesized via glycolysis is utilized for transport purposes. The experimental results and theoretical calculations suggest that in glucose-containing media Na+ transport increases from 0.75 to 1.78 pmol/hour on a per cell basis. The activation of Na+ transport is due to the exchange of protons formed via glucose conversion into lactate for Na+, i.e., to the stimulation of Na+/H+ antiport. The permeability of plasma membranes for K+ increases 2.75-fold, while the passive flux of Na+ diminishes. It is concluded that the observed increase in the Na+/K+ ratio in ascite tumour cells is connected with their enhanced ability to synthesize lactic acid. Presumably, glycolysis is one of regulatory mechanisms of intracellular ratios of monovalent cations.

摘要

腹水肿瘤细胞对氧气的吸附强度实际上并不取决于细胞与孵育培养基之间的一价阳离子浓度梯度,而糖酵解速率则随着浓度梯度的减小而同时降低。在有丝分裂周期开始时的同步培养物中,通过糖酵解重新合成的大部分ATP用于生物聚合物的合成,而在S期结束和G2期时,用于阳离子跨质膜的运输。通过糖酵解重新合成的ATP总量的35%至100%用于运输目的。实验结果和理论计算表明,在含葡萄糖的培养基中,每个细胞的Na+运输量从0.75皮摩尔/小时增加到1.78皮摩尔/小时。Na+运输的激活是由于葡萄糖转化为乳酸所形成的质子与Na+交换,即Na+/H+反向转运的刺激。质膜对K+的通透性增加2.75倍,而Na+的被动通量减少。得出的结论是,腹水肿瘤细胞中观察到的Na+/K+比值增加与其合成乳酸的能力增强有关。推测糖酵解是一价阳离子细胞内比值的调节机制之一。

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