首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Up-regulation of Na+-coupled glucose transporter SGLT1 by caveolin-1
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Up-regulation of Na+-coupled glucose transporter SGLT1 by caveolin-1

机译:小窝蛋白1对Na +偶联葡萄糖转运蛋白SGLT1的上调

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The Na+-coupled glucose transporter SGLT1 (SLC5A1) accomplishes concentrative cellular glucose uptake even at low extracellular glucose concentrations. The carrier is expressed in renal proximal tubules, small intestine and a variety of nonpolarized cells including several tumor cells. The present study explored whether SGLT1 activity is regulated by caveolin-1, which is known to regulate the insertion of several ion channels and carriers in the cell membrane. To this end, SGLT1 was expressed in Xenopus oocytes with or without additional expression of caveolin-1 and electrogenic glucose transport determined by dual electrode voltage clamp experiments. In SGLT1-expressing oocytes, but not in oocytes injected with water or caveolin-1 alone, the addition of glucose to the extracellular bath generated an inward current (Ig), which was increased following coexpression of caveolin-1. Kinetic analysis revealed that caveolin-1 increased maximal Ig without significantly modifying the glucose concentration required to trigger half maximal Ig (KM). According to chemiluminescence and confocal microscopy, caveolin-1 increased SGLT1 protein abundance in the cell membrane. Inhibition of SGLT1 insertion by brefeldin A (5 μM) resulted in a decline of Ig, which was similar in the absence and presence of caveolin-1. In conclusion, caveolin-1 up-regulates SGLT1 activity by increasing carrier protein abundance in the cell membrane, an effect presumably due to stimulation of carrier protein insertion into the cell membrane.
机译:Na +偶联的葡萄糖转运蛋白SGLT1(SLC5A1)即使在细胞外葡萄糖浓度低的情况下也可以实现集中的细胞葡萄糖摄取。载体在肾近端小管,小肠和包括多种肿瘤细胞在内的各种非极化细胞中表达。本研究探讨了SGLT1的活性是否受Caveolin-1的调节,而Caveolin-1可以调节细胞膜中几个离子通道和载体的插入。为此,SGLT1在非洲爪蟾卵母细胞中表达,伴有或不伴有小窝蛋白-1的表达,以及通过双电极电压钳实验确定的电原葡萄糖转运。在表达SGLT1的卵母细胞中,而不是在单独注有水或caveolin-1的卵母细胞中,向细胞外液中添加葡萄糖会产生内向电流(Ig),在共表达caveolin-1后,内​​向电流会增加。动力学分析表明,caveolin-1可增加最大Ig,而不会显着改变触发最大一半Ig(KM)所需的葡萄糖浓度。根据化学发光和共聚焦显微镜,caveolin-1增加了细胞膜中SGLT1蛋白的丰度。布雷菲德菌素A(5μM)对SGLT1插入的抑制作用导致Ig下降,这在不存在和存在caveolin-1的情况下相似。总之,caveolin-1通过增加细胞膜中载体蛋白的丰度来上调SGLT1活性,这可能是由于刺激了载体蛋白插入细胞膜中所致。

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