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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Molecular cloning and characterization of ouabain-insensitive Na+-ATPase in the parasitic protist, Trypanosoma cruzi
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Molecular cloning and characterization of ouabain-insensitive Na+-ATPase in the parasitic protist, Trypanosoma cruzi

机译:寄生虫原虫锥虫中哇巴因不敏感的Na + -ATPase的分子克隆和鉴定

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Maintaining low intracellular sodium concentrations is vital for almost all organisms. Na+ efflux is generally governed by P-type ATPases, Na+/K+-ATPase in animals and Na+-ATPase, called ENA, in fungi and plants. Trypanosoma cruzi, which parasitizes mammalian cells, must undergo drastic adaptations to high Na+ concentrations outside and low Na+ concentrations inside host cells. However, T cruzi Na+ efflux pumps have not been identified. We report here the cloning and characterization of the gene encoding Na+-ATPase in T cruzi, which resembled fungal and plant ENAs, termed TcENA. TcENA was a plasma membrane protein expressed throughout the parasite life cycle. The transcription level of TcENA was higher in insect stage epimastigotes and blood stream trypomastigotes than in intracellular amastigotes, probably reflecting the high Na+ concentration outside the host cells. Biochemical analysis of TcENA expressed heterologously in mammalian cells demonstrated, for the fist time, that the ATPase activity of TcENA is stimulated by both Na+ and K and is insensitive to ouabain, a specific inhibitor of Na+/K+-ATPases. Furthermore, epimastigotes overproducing TcENA showed increased tolerance to high Na+ stress. Our findings suggest that TcENA acts as a sodium pump and provide insights into the regulation of ion homeostasis in the parasitic protist. (c) 2006 Elsevier B.V All rights reserved.
机译:维持低细胞内钠浓度对于几乎所有生物都是至关重要的。 Na +外排通常由P型ATP酶,动物中的Na + / K + -ATPase和真菌和植物中的Na + -ATPase(称为ENA)控制。寄生哺乳动物细胞的克氏锥虫必须对宿主细胞外的高Na +浓度和宿主细胞内的低Na +浓度进行剧烈的适应。但是,尚未发现T cruzi Na +外排泵。我们在这里报告了在T cruzi中编码Na + -ATPase的基因的克隆和鉴定,类似于真菌和植物ENA,称为TcENA。 TcENA是在整个寄生虫生命周期中表达的质膜蛋白。 TcENA的转录水平在昆虫阶段的近鞭毛象和血流的类脂鞭毛象中比在细胞内的变形虫中更高,这可能反映了宿主细胞外的高Na +浓度。在哺乳动物细胞中异源表达的TcENA的生化分析表明,一开始,TcENA的ATPase活性受到Na +和K的刺激,并且对哇巴因(一种特殊的Na + / K + -ATPase抑制剂)不敏感。此外,过量生产TcENA的副鞭毛显示对高Na +胁迫的耐受性增强。我们的发现表明,TcENA起到了钠泵的作用,并为寄生虫原生生物中离子稳态的调节提供了见识。 (c)2006 Elsevier B.V保留所有权利。

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