首页> 外文期刊>The Journal of Membrane Biology >Roles of Aquaporin-3 Water Channels in Volume-Regulatory Water Flow in a Human Epithelial Cell Line
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Roles of Aquaporin-3 Water Channels in Volume-Regulatory Water Flow in a Human Epithelial Cell Line

机译:Aquaporin-3水通道在人类上皮细胞系中的体积调节水流中的作用。

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摘要

Membrane water transport is an essential event not only in the osmotic cell volume change but also in the subsequent cell volume regulation. Here we investigated the route of water transport involved in the regulatory volume decrease (RVD) that occurs after osmotic swelling in human epithelial Intestine 407 cells. The diffusion water permeability coefficient (Pd) measured by NMR under isotonic conditions was much smaller than the osmotic water permeability coefficient (Pf) measured under an osmotic gradient. Temperature dependence of Pf showed the Arrhenius activation energy (Ea) of a low value (1.6 kcal/mol). These results indicate an involvement of a facilitated diffusion mechanism in osmotic water transport. A mercurial water channel blocker (HgCl2) diminished the Pf value. A non-mercurial sulfhydryl reagent (MMTS) was also effective. These blockers of water channels suppressed the RVD. RT-PCR and immunocytochemistry demonstrated predominant expression of AQP3 water channel in this cell line. Downregulation of AQP3 expression induced by treatment with antisense oligodeoxynucleotides was found to suppress the RVD response. Thus, it is concluded that AQP3 water channels serve as an essential pathway for volume-regulatory water transport in, human epithelial cells.
机译:膜水运输不仅在渗透细胞体积变化中而且在随后的细胞体积调节中都是必不可少的事件。在这里,我们研究了在人上皮小肠407细胞渗透性肿胀后发生的调节体积减少(RVD)中涉及的水运输途径。在等渗条件下通过NMR测量的扩散水渗透系数(Pd)远小于在渗透梯度下测量的渗透水渗透系数(Pf)。 Pf的温度依赖性显示其Arrhenius活化能(Ea)较低(1.6 kcal / mol)。这些结果表明促进渗透机制参与渗透水的运输。汞的水通道阻滞剂(HgCl2 )降低了Pf值。非汞巯基试剂(MMTS)也是有效的。这些水通道阻滞剂抑制了RVD。 RT-PCR和免疫细胞化学证明了该细胞系中AQP3水通道的主要表达。发现通过用反义寡脱氧核苷酸处理诱导的AQP3表达下调抑制了RVD应答。因此,可以得出结论,AQP3水通道是人类上皮细胞中体积调节水运输的重要途径。

著录项

  • 来源
    《The Journal of Membrane Biology》 |2005年第1期|55-64|共10页
  • 作者单位

    Department of Cell Physiology National Institute for Physiological SciencesDepartment of Gastroenterology Kyoto University Faculty of Medicine;

    Department of Cell Physiology National Institute for Physiological Sciences;

    Department of Cell Physiology National Institute for Physiological Sciences;

    Department of Cell Physiology National Institute for Physiological Sciences;

    Department of Molecular Physiology and Biophysics Faculty of Medicine University of Fukui Matsuoka;

    Department of Gastroenterology Kyoto University Faculty of Medicine;

    Department of Gastroenterology Kyoto University Faculty of Medicine;

    Department of Cell Physiology National Institute for Physiological Sciences;

    Department of Cell Physiology National Institute for Physiological Sciences;

    Department of Cell Physiology National Institute for Physiological SciencesDivision of Pharmacology Department of Biochemistry and Bioinformative Sciences School of Medicine University of Fukui;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Water channel; Aquaporin; Osmotic swelling; Cell volume regulation; Regulatory volume decrease; Epithelial cell;

    机译:水通道;水通道蛋白;渗透溶胀;细胞体积调节;调节体积减少;上皮细胞;

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