Xu Guozhong, Liu Rutao, Zak Olga, Aisen Philip, Chance Mark R
Case Center for Proteomics and Mass Spectrometry, Case Western Reserve University, Cleveland, Ohio 44106, USA.
Mol Cell Proteomics. 2005 Dec;4(12):1959-67. doi: 10.1074/mcp.M500095-MCP200. Epub 2005 Sep 16.
The structural allostery and binding interface for the human serum transferrin (Tf)*transferrin receptor (TfR) complex were identified using radiolytic footprinting and mass spectrometry. We have determined previously that the transferrin C-lobe binds to the receptor helical domain. In this study we examined the binding interactions of full-length transferrin with receptor and compared these data with a model of the complex derived from cryoelectron microscopy (cryo-EM) reconstructions (Cheng, Y., Zak, O., Aisen, P., Harrison, S. C. & Walz, T. (2004) Structure of the human transferrin receptor.transferrin complex. Cell 116, 565-576). The footprinting results provide the following novel conclusions. First, we report characteristic oxidations of acidic residues in the C-lobe of native Tf and basic residues in the helical domain of TfR that were suppressed as a function of complex formation; this confirms ionic interactions between these protein segments as predicted by cryo-EM data and demonstrates a novel method for detecting ion pair interactions in the formation of macromolecular complexes. Second, the specific side-chain interactions between the C-lobe and N-lobe of transferrin and the corresponding interactions sites on the transferrin receptor predicted from cryo-EM were confirmed in solution. Last, the footprinting data revealed allosteric movements of the iron binding C- and N-lobes of Tf that sequester iron as a function of complex formation; these structural changes promote tighter binding of the metal ion and facilitate efficient ion transport during endocytosis.
利用辐射足迹法和质谱法确定了人血清转铁蛋白(Tf)-转铁蛋白受体(TfR)复合物的结构变构和结合界面。我们之前已确定转铁蛋白C-叶与受体螺旋结构域结合。在本研究中,我们检测了全长转铁蛋白与受体的结合相互作用,并将这些数据与源自冷冻电子显微镜(cryo-EM)重建的复合物模型进行了比较(Cheng, Y., Zak, O., Aisen, P., Harrison, S. C. & Walz, T. (2004) Structure of the human transferrin receptor.transferrin complex. Cell 116, 565-576)。足迹法结果得出了以下新结论。首先,我们报道了天然Tf的C-叶中酸性残基以及TfR螺旋结构域中碱性残基的特征性氧化,这些氧化随着复合物的形成而受到抑制;这证实了冷冻电镜数据预测的这些蛋白质片段之间的离子相互作用,并展示了一种检测大分子复合物形成过程中离子对相互作用的新方法。其次,在溶液中证实了转铁蛋白的C-叶和N-叶之间的特定侧链相互作用以及冷冻电镜预测的转铁蛋白受体上相应的相互作用位点。最后,足迹法数据揭示了Tf的铁结合C-叶和N-叶的变构运动,这些运动随着复合物的形成而螯合铁;这些结构变化促进了金属离子的更紧密结合,并在胞吞作用期间促进了有效的离子运输。