State Key Laboratory of Bio-membrane and Membrane Biotechnology, Center for Structural Biology, Tsinghua University, Beijing 100084, China.
Nature. 2012 Oct 18;490(7420):361-6. doi: 10.1038/nature11524.
Glucose transporters are essential for metabolism of glucose in cells of diverse organisms from microbes to humans, exemplified by the disease-related human proteins GLUT1, 2, 3 and 4. Despite rigorous efforts, the structural information for GLUT1-4 or their homologues remains largely unknown. Here we report three related crystal structures of XylE, an Escherichia coli homologue of GLUT1-4, in complex with d-xylose, d-glucose and 6-bromo-6-deoxy-D-glucose, at resolutions of 2.8, 2.9 and 2.6 Å, respectively. The structure consists of a typical major facilitator superfamily fold of 12 transmembrane segments and a unique intracellular four-helix domain. XylE was captured in an outward-facing, partly occluded conformation. Most of the important amino acids responsible for recognition of D-xylose or d-glucose are invariant in GLUT1-4, suggesting functional and mechanistic conservations. Structure-based modelling of GLUT1-4 allows mapping and interpretation of disease-related mutations. The structural and biochemical information reported here constitutes an important framework for mechanistic understanding of glucose transporters and sugar porters in general.
葡萄糖转运蛋白对于从微生物到人等各种生物体的细胞中葡萄糖的代谢至关重要,人类疾病相关蛋白 GLUT1、2、3 和 4 就是很好的例子。尽管已经进行了严格的研究,但 GLUT1-4 或其同源物的结构信息在很大程度上仍然未知。在这里,我们报道了三种相关的 XylE 晶体结构,XylE 是 GLUT1-4 的大肠杆菌同源物,分别与 d-木糖、d-葡萄糖和 6-溴-6-脱氧-D-葡萄糖复合物,分辨率分别为 2.8、2.9 和 2.6Å。该结构由典型的 12 个跨膜片段主要易化因子超家族折叠和独特的细胞内四螺旋结构域组成。XylE 被捕获在向外开放、部分闭塞的构象中。负责识别 D-木糖或 d-葡萄糖的大多数重要氨基酸在 GLUT1-4 中是不变的,这表明它们具有功能和机制上的保守性。基于结构的 GLUT1-4 建模允许对疾病相关突变进行映射和解释。这里报道的结构和生化信息为理解葡萄糖转运蛋白和一般糖转运蛋白的机制提供了一个重要的框架。