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SLC5A9/SGLT4是一种新的钠依赖性葡萄糖转运体,是甘露糖、1,5-脱水-D-葡萄糖醇和果糖的必需转运体。

SLC5A9/SGLT4, a new Na+-dependent glucose transporter, is an essential transporter for mannose, 1,5-anhydro-D-glucitol, and fructose.

作者信息

Tazawa Shigeki, Yamato Tokuhisa, Fujikura Hideki, Hiratochi Masahiro, Itoh Fumiaki, Tomae Masaki, Takemura Yukiko, Maruyama Hidetoshi, Sugiyama Tomoyasu, Wakamatsu Ai, Isogai Takao, Isaji Masayuki

机构信息

Discovery Research II, R&D, Kissei Pharmaceutical Co. Ltd., 4365-1 Kashiwabara, Hotaka, Minamiazumi, Nagano, 399-8304, Japan.

出版信息

Life Sci. 2005 Jan 14;76(9):1039-50. doi: 10.1016/j.lfs.2004.10.016.

Abstract

We isolated a cDNA clone of SLC5A9/SGLT4 from human small intestinal full-length cDNA libraries, and functionally characterized it in vitro. The messenger RNA encoding SGLT4 was mainly expressed in the small intestine and kidney, among the human tissues tested. COS-7 cells transiently expressing SGLT4 exhibited Na(+)-dependent alpha-methyl-D-glucopyranoside (AMG) transport activity with an apparent K(m) of 2.6 mM, suggesting that SGLT4 is a low affinity-type transporter. The rank order of naturally occurring sugar analogs for the inhibition of AMG transport was: D-mannose (Man) >> D-glucose (Glc) > D-fructose (Fru) = 1,5-anhydro-D-glucitol (1,5AG) > D-galactose (Gal). Recognition of Man as a substrate was confirmed by direct uptake of Man into the cell. COS-7 cells expressing a putative murine SGLT4 ortholog showed similar Na(+)-dependent AMG transport activity and a similar deduced substrate specificity. These results suggest that SGLT4 would have unique physiological functions (i.e., absorption and/or reabsorption of Man, 1,5AG, and Fru, in addition to Glc).

摘要

我们从人小肠全长cDNA文库中分离出SLC5A9/SGLT4的一个cDNA克隆,并在体外对其进行了功能鉴定。在所检测的人体组织中,编码SGLT4的信使RNA主要在小肠和肾脏中表达。瞬时表达SGLT4的COS-7细胞表现出Na⁺依赖性α-甲基-D-吡喃葡萄糖苷(AMG)转运活性,其表观K(m)为2.6 mM,表明SGLT4是一种低亲和力型转运体。抑制AMG转运的天然糖类类似物的活性顺序为:D-甘露糖(Man)>> D-葡萄糖(Glc)> D-果糖(Fru)= 1,5-脱水-D-葡萄糖醇(1,5AG)> D-半乳糖(Gal)。通过将Man直接摄取到细胞中证实了其作为底物的识别。表达假定的小鼠SGLT4直系同源物的COS-7细胞表现出类似的Na⁺依赖性AMG转运活性和类似的推导底物特异性。这些结果表明,SGLT4可能具有独特的生理功能(即除了Glc之外,还能吸收和/或重吸收Man、1,5AG和Fru)。

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