Firnges M A, Lin J T, Kinne R K
Max-Planck-Institut für molekulare Physiologie, Abteilung Epithelphysiologie, Dortmund, Germany.
J Membr Biol. 2001 Jan 15;179(2):143-53. doi: 10.1007/s002320010044.
The sodium-D-glucose cotransporter (SGLT1) was expressed in a yeast mutant strain NY 17 (sec6-4) that accumulates secretory vesicles at a nonpermissive temperature because of a block in the delivery of these vesicles to the plasma membrane. By differential centrifugation a microsomal fraction enriched in secretory vesicles was prepared with a high specific activity of the vanadate-sensitive H+-ATPase and invertase. In this membrane fraction one protein band of an apparent molecular weight of 55 kDa representing the nonglycosylated SGLT1 protein could be detected by immunochemical analysis. In addition, higher molecular weight protein bands probably representing dimers and aggregates were found. In transport studies with the microsomes D-glucose fluxes showed asymmetric properties: efflux experiments revealed the typical properties of the SGLT1 such as sodium dependence, inhibition by phlorizin and potential dependence. Influx of D-glucose showed no dependence on sodium and was not inhibited by phlorizin. Furthermore, the transporter exhibited a striking asymmetry with regard to the D-glucose affinity and the sugar specificity. These results suggest that the orientation of the SGLT1 expressed in yeast secretory vesicles is, indeed, inverted with regard to its configuration in the plasma membrane of epithelial cells. Moreover, there are striking functional differences between the periplasmic and cytoplasmic face of the transporter.
钠 - D - 葡萄糖共转运蛋白(SGLT1)在酵母突变株NY 17(sec6 - 4)中表达,该突变株在非允许温度下会积累分泌囊泡,原因是这些囊泡向质膜的转运受阻。通过差速离心法制备了富含分泌囊泡的微粒体部分,其具有高比活性的钒酸盐敏感的H⁺ - ATP酶和转化酶。在该膜部分中,通过免疫化学分析可检测到一条表观分子量为55 kDa的蛋白带,代表非糖基化的SGLT1蛋白。此外,还发现了可能代表二聚体和聚集体的更高分子量的蛋白带。在用微粒体进行的转运研究中,D - 葡萄糖通量显示出不对称特性:外流实验揭示了SGLT1的典型特性,如对钠的依赖性、根皮苷抑制作用和电位依赖性。D - 葡萄糖的内流不依赖于钠,也不受根皮苷抑制。此外,该转运蛋白在D - 葡萄糖亲和力和糖特异性方面表现出显著的不对称性。这些结果表明,在酵母分泌囊泡中表达的SGLT1的取向与其在上皮细胞质膜中的构型确实相反。此外,该转运蛋白的周质面和细胞质面之间存在显著的功能差异。