Park Min-Sun
Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, Virginia, United States of America.
PLoS One. 2015 Apr 28;10(4):e0125361. doi: 10.1371/journal.pone.0125361. eCollection 2015.
Glucose transporters (GLUTs) provide a pathway for glucose transport across membranes. Human GLUTs are implicated in devastating diseases such as heart disease, hyper- and hypo-glycemia, type 2 diabetes and cancer. The human GLUT1 has been recently crystalized in the inward-facing open conformation. However, there is no other structural information for other conformations. The X-ray structures of E. coli Xylose permease (XylE), a glucose transporter homolog, are available in multiple conformations with and without the substrates D-xylose and D-glucose. XylE has high sequence homology to human GLUT1 and key residues in the sugar-binding pocket are conserved. Here we construct a homology model for human GLUT1 based on the available XylE crystal structure in the partially occluded outward-facing conformation. A long unbiased all atom molecular dynamics simulation starting from the model can capture a new fully opened outward-facing conformation. Our investigation of molecular interactions at the interface between the transmembrane (TM) domains and the intracellular helices (ICH) domain in the outward- and inward-facing conformation supports that the ICH domain likely stabilizes the outward-facing conformation in GLUT1. Furthermore, inducing a conformational transition, our simulations manifest a global asymmetric rocker switch motion and detailed molecular interactions between the substrate and residues through the water-filled selective pore along a pathway from the extracellular to the intracellular side. The results presented here are consistent with previously published biochemical, mutagenesis and functional studies. Together, this study shed light on the structure and functional relationships of GLUT1 in multiple conformational states.
葡萄糖转运蛋白(GLUTs)为葡萄糖跨膜运输提供了一条途径。人类GLUTs与诸如心脏病、高血糖和低血糖、2型糖尿病以及癌症等严重疾病有关。人类GLUT1最近已以内向开放构象结晶。然而,对于其他构象尚无其他结构信息。大肠杆菌木糖通透酶(XylE)是一种葡萄糖转运蛋白同源物,其X射线结构有多种构象,包括结合和未结合底物D - 木糖及D - 葡萄糖的情况。XylE与人类GLUT1具有高度序列同源性,且糖结合口袋中的关键残基是保守的。在此,我们基于部分封闭外向构象的可用XylE晶体结构构建了人类GLUT1的同源模型。从该模型开始的长时间无偏全原子分子动力学模拟能够捕捉到一种新的完全开放外向构象。我们对跨膜(TM)结构域与细胞内螺旋(ICH)结构域在向外和向内构象界面处的分子相互作用的研究支持ICH结构域可能稳定GLUT1中的外向构象。此外,通过诱导构象转变,我们的模拟展示了一种全局不对称摇杆开关运动以及底物与残基之间通过充满水的选择性孔从细胞外侧到细胞内侧路径上的详细分子相互作用。此处呈现的结果与先前发表的生化、诱变和功能研究一致。总之,这项研究揭示了GLUT1在多种构象状态下的结构与功能关系。