Amrita School of Biotechnology, Amrita Vishwa Vidyapeetham, Kollam, Kerala, India.
PLoS One. 2010 Dec 3;5(12):e14217. doi: 10.1371/journal.pone.0014217.
Glucose transporter 4 (GLUT4) is an insulin facilitated glucose transporter that plays an important role in maintaining blood glucose homeostasis. GLUT4 is sequestered into intracellular vesicles in unstimulated cells and translocated to the plasma membrane by various stimuli. Understanding the structural details of GLUT4 will provide insights into the mechanism of glucose transport and its regulation. To date, a crystal structure for GLUT4 is not available. However, earlier work from our laboratory proposed a well validated homology model for GLUT4 based on the experimental data available on GLUT1 and the crystal structure data obtained from the glycerol 3-phosphate transporter.
METHODOLOGY/PRINCIPAL FINDINGS: In the present study, the dynamic behavior of GLUT4 in a membrane environment was analyzed using three forms of GLUT4 (apo, substrate and ATP-substrate bound states). Apo form simulation analysis revealed an extracellular open conformation of GLUT4 in the membrane favoring easy exofacial binding of substrate. Simulation studies with the substrate bound form proposed a stable state of GLUT4 with glucose, which can be a substrate-occluded state of the transporter. Principal component analysis suggested a clockwise movement for the domains in the apo form, whereas ATP substrate-bound form induced an anti-clockwise rotation. Simulation studies suggested distinct conformational changes for the GLUT4 domains in the ATP substrate-bound form and favor a constricted behavior for the transport channel. Various inter-domain hydrogen bonds and switching of a salt-bridge network from E345-R350-E409 to E345-R169-E409 contributed to this ATP-mediated channel constriction favoring substrate occlusion and prevention of its release into cytoplasm. These data are consistent with the biochemical studies, suggesting an inhibitory role for ATP in GLUT-mediated glucose transport.
CONCLUSIONS/SIGNIFICANCE: In the absence of a crystal structure for any glucose transporter, this study provides mechanistic details of the conformational changes in GLUT4 induced by substrate and its regulator.
葡萄糖转运蛋白 4(GLUT4)是一种胰岛素促进的葡萄糖转运体,在维持血糖稳态中起着重要作用。未受刺激的细胞中,GLUT4 被隔离在内质网小泡中,并通过各种刺激物转移到质膜。了解 GLUT4 的结构细节将为葡萄糖转运及其调节机制提供深入了解。迄今为止,尚无 GLUT4 的晶体结构。然而,我们实验室的早期工作基于 GLUT1 上的实验数据和甘油磷酸转运蛋白获得的晶体结构数据,提出了 GLUT4 的经过充分验证的同源模型。
方法/主要发现:在本研究中,使用三种形式的 GLUT4(apo、底物和 ATP-底物结合态)分析了 GLUT4 在膜环境中的动态行为。apo 形式的模拟分析显示 GLUT4 在膜中的细胞外开放构象有利于底物的易外表面结合。与底物结合形式的模拟研究提出了 GLUT4 与葡萄糖的稳定状态,这可能是转运体的底物封闭状态。主成分分析表明 apo 形式的结构域呈顺时针运动,而 ATP 底物结合形式诱导逆时针旋转。模拟研究表明,ATP 底物结合形式的 GLUT4 结构域发生明显的构象变化,并有利于转运通道的收缩行为。各种结构域间氢键和从 E345-R350-E409 到 E345-R169-E409 的盐桥网络的切换有助于这种 ATP 介导的通道收缩,有利于底物的封闭并防止其释放到细胞质中。这些数据与生化研究一致,表明 ATP 在 GLUT 介导的葡萄糖转运中起抑制作用。
结论/意义:在没有任何葡萄糖转运体晶体结构的情况下,本研究提供了底物和其调节剂诱导的 GLUT4 构象变化的机制细节。