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抑制钠钾ATP酶活性可减少吉氏巴贝斯虫对遗传性高钾低钠浓度犬红细胞的感染。

Inhibition of Na,K-ATPase activity reduces Babesia gibsoni infection of canine erythrocytes with inherited high K, low Na concentrations.

作者信息

Yamasaki Masahiro, Takada Akira, Yamato Osamu, Maede Yoshimitsu

机构信息

Laboratory of Internal Medicine, Department of Veterinary Clinical Sciences, Graduate School of Veterinary Medicine, Hokkaido University, Sapporo, Japan.

出版信息

J Parasitol. 2005 Dec;91(6):1287-92. doi: 10.1645/GE-509R.1.

Abstract

Babesia gibsoni multiplies well in canine red blood cells (RBCs) containing high concentrations of potassium (HK), reduced glutathione, and free amino acids as a result of an inherited high Na,K-ATPase activity, i.e., HK RBCs. To determine the role of Na,K-ATPase in the multiplication of B. gibsoni, the effect of ouabain on the proliferation of the parasites in HK RBCs was investigated. To determine the direct effect of ouabain on the parasites, the proliferation of the parasites in normal canine RBCs containing low potassium (LK) and high sodium concentrations, i.e., LK RBCs, which completely lack Na,K-ATPase activity, was observed. Ouabain at 0.1 mM significantly suppressed the multiplication of B. gibsoni in HK RBCs in vitro, whereas it had no effect on the parasites in LK RBCs. The results suggest that the multiplication of B. gibsoni in HK RBCs depends mainly on the presence of Na,K-ATPase in the cells. Therefore, the effects of ouabain on the intracellular cation and free amino acid composition of the HK RBCs were examined. In HK RBCs incubated with ouabain, a marked decrease in the concentration of potassium and an increase in sodium were observed, together with a decrease in the number of parasitized cells. These results suggest that the intracellular cation composition maintained by Na,K-ATPase might be advantageous to the parasites. Moreover, the concentrations of some free amino acids, i.e., asparagine, aspartate, glutamate, glutamine, glycine, and histidine, were markedly decreased in HK RBCs incubated with ouabain. Decreased concentrations of the free amino acids induced by inhibition of Na,K-ATPase seemed to affect the multiplication of B. gibsoni in HK RBCs. Based on these results, it is clear that the high Na,K-ATPase activity in HK RBCs contributes to the proliferation of B. gibsoni by maintaining high potassium and low sodium concentrations, as well as high concentrations of some free amino acids in the cells.

摘要

由于遗传性高钠钾 - 三磷酸腺苷酶(Na,K - ATPase)活性,吉氏巴贝斯虫(Babesia gibsoni)在含有高浓度钾(HK)、还原型谷胱甘肽和游离氨基酸的犬红细胞(RBC)中增殖良好,即HK红细胞。为了确定Na,K - ATPase在吉氏巴贝斯虫增殖中的作用,研究了哇巴因对HK红细胞中寄生虫增殖的影响。为了确定哇巴因对寄生虫的直接作用,观察了在完全缺乏Na,K - ATPase活性的低钾(LK)和高钠浓度的正常犬红细胞(即LK红细胞)中寄生虫的增殖情况。0.1 mM的哇巴因在体外显著抑制了吉氏巴贝斯虫在HK红细胞中的增殖,而对LK红细胞中的寄生虫没有影响。结果表明,吉氏巴贝斯虫在HK红细胞中的增殖主要取决于细胞中Na,K - ATPase的存在。因此,研究了哇巴因对HK红细胞细胞内阳离子和游离氨基酸组成的影响。在用哇巴因孵育的HK红细胞中,观察到钾浓度显著降低,钠浓度升高,同时被寄生细胞的数量减少。这些结果表明,由Na,K - ATPase维持的细胞内阳离子组成可能对寄生虫有利。此外,在用哇巴因孵育的HK红细胞中,一些游离氨基酸,即天冬酰胺、天冬氨酸、谷氨酸[1]、谷氨酰胺、甘氨酸和组氨酸的浓度显著降低。抑制Na,K - ATPase诱导的游离氨基酸浓度降低似乎影响了吉氏巴贝斯虫在HK红细胞中的增殖。基于这些结果,很明显HK红细胞中的高Na,K - ATPase活性通过维持高钾和低钠浓度以及细胞中一些游离氨基酸的高浓度,促进了吉氏巴贝斯虫的增殖。 [1]原文glutamate后括号内容缺失,此处保留原文格式

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