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首页> 外文期刊>The Journal of Physiology >Sugar transport by mammalian members of the SLC26 superfamily of anion-bicarbonate exchangers.
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Sugar transport by mammalian members of the SLC26 superfamily of anion-bicarbonate exchangers.

机译:阴离子-碳酸氢根交换剂的SLC26超家族的哺乳动物成员进行的糖运输。

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The mammalian cochlea contains a population of outer hair cells (OHCs) whose electromotility depends on an assembly of 'motor' molecules in the basolateral membrane of the cell. Named 'prestin', the molecule is a member of the SLC26 anion transporter superfamily. We show both directly and indirectly that SLC26A5, rat prestin, takes up hexoses when expressed in several cell lines. Direct measurements of labelled fructose transport into COS-7 cells expressing prestin are reported here. Indirect measurements, using imaging techniques, show that transfected HEK-293 or CHO-Ki cells undergo reversible volume changes when exposed to isosmotic glucose-fructose exchange. The observations are consistent with the sugar transport. A similar transport was observed using a C-terminal green fluorescent protein (GFP)-tagged pendrin (SLC26A4) construct. Cells transfected with GFP alone did not respond to sugars. The data are consistent with fructose being transported by prestin with an apparent Km=24 nm. From the voltage-dependent capacitance of transfected cells, we estimate that 250,000 prestin molecules were present and hence that the single transport rate is not more than 3000 fructose molecules s(-1). Comparison of the transfected cell swelling rates induced by fructose and by osmotic steps indicates that water was co-transported with sugar. We suggest that the structure of SLC26 family members allows them to act as neutral substrate transporters and may explain observed properties of cochlear hair cells.
机译:哺乳动物的耳蜗包含一群外毛细胞(OHC),其电动力取决于细胞基底外侧膜中“运动”分子的组装。该分子名为“ prestin”,是SLC26阴离子转运蛋白超家族的成员。我们直接和间接地表明,SLC26A5,大鼠prestin,在几种细胞系中表达时会吸收己糖。本文报道了直接测量标记果糖转运到表达prestin的COS-7细胞中的过程。使用成像技术的间接测量表明,当暴露于等渗葡萄糖-果糖交换时,转染的HEK-293或CHO-Ki细胞发生可逆的体积变化。观察结果与糖的运输是一致的。使用C端绿色荧光蛋白(GFP)标记的pendrin(SLC26A4)构建体,观察到了类似的转运。仅用GFP转染的细胞对糖无反应。数据与果糖被视黄素以明显的Km = 24nm运输。从转染细胞的电压依赖性电容,我们估计存在250,000个prestin分子,因此单个转运速率不超过3000个果糖分子s(-1)。果糖和渗透步骤诱导的转染细胞溶胀率的比较表明,水与糖共同运输。我们建议,SLC26家族成员的结构允许他们充当中性底物转运蛋白,并可以解释观察到的耳蜗毛细胞的特性。

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