Puntheeranurak Theeraporn, Kasch Myriam, Xia Xiaobing, Hinterdorfer Peter, Kinne Rolf K H
Department of Biology, Faculty of Science, Mahidol University, and Center of Excellence, National Nanotechnology Center at Mahidol University, Bangkok, 10400, Thailand.
J Biol Chem. 2007 Aug 31;282(35):25222-30. doi: 10.1074/jbc.M704190200. Epub 2007 Jul 6.
A combination of biophysical and biochemical approaches was employed to probe the topology, arrangement, and function of the large surface subdomains of SGLT1 in living cells. Using atomic force microscopy on the single molecule level, Chinese hamster ovary cells overexpressing SGLT1 were probed with atomic force microscopy tips carrying antibodies against epitopes of different subdomains. Specific single molecule recognition events were observed with antibodies against loop 6-7, loop 8-9, and loop 13-14, demonstrating the extracellular orientation of these subdomains. The addition of D-glucose in Na+-containing medium decreased the binding probability of the loop 8-9 antibody, suggesting a transport-related conformational change in the region between amino acids 339 and 356. Transport studies with mutants C345A, C351A, C355A, or C361S supported a role for these amino acids in determining the affinity of SGLT1 for D-glucose. MTSET, [2-(trimethylammonium)ethyl] methanethiosulfonate and dithiothreitol inhibition patterns on alpha-methyl-glucoside uptake by COS-7 cells expressing C255A, C560A, or C608A suggested the presence of a disulfide bridge between Cys255 and Cys608. This assumption was corroborated by matrix-assisted laser desorption ionization time-of-flight mass spectrometry showing mass differences in peptides derived from transporters biotinylated in the absence and presence of dithiothreitol. These results indicate that loop 6-7 and loop 13-14 are connected by a disulfide bridge. This bridge brings also loop 8-9 into close vicinity with the former subdomains to create a vestibule for sugar binding.
采用生物物理和生物化学方法相结合的方式,探究活细胞中SGLT1大表面亚结构域的拓扑结构、排列方式及功能。在单分子水平上使用原子力显微镜,用携带针对不同亚结构域表位的抗体的原子力显微镜探针探测过表达SGLT1的中国仓鼠卵巢细胞。观察到针对环6 - 7、环8 - 9和环13 - 14的抗体发生特异性单分子识别事件,证明这些亚结构域位于细胞外。在含钠培养基中添加D - 葡萄糖降低了环8 - 9抗体的结合概率,表明氨基酸339和356之间区域发生了与转运相关的构象变化。对突变体C345A、C351A、C355A或C361S进行的转运研究支持了这些氨基酸在决定SGLT1对D - 葡萄糖亲和力方面的作用。MTSET([2 - (三甲基铵)乙基]甲硫基磺酸盐)、二硫苏糖醇对表达C255A、C560A或C608A的COS - 7细胞摄取α - 甲基 - 葡萄糖苷的抑制模式表明,半胱氨酸255和半胱氨酸608之间存在二硫键。基质辅助激光解吸电离飞行时间质谱显示,在不存在和存在二硫苏糖醇的情况下生物素化的转运体衍生肽段存在质量差异,证实了这一假设。这些结果表明,环6 - 7和环13 - 14通过二硫键相连。该二硫键还使环8 - 9与前两个亚结构域紧密相邻,形成一个糖结合的前庭。