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Three-Dimensional Protein Fold Determination from Backbone Amide Pseudocontact Shifts Generated by Lanthanide Tags at Multiple Sites

机译:从镧系元素标记在多个位置生成的骨干酰胺伪接触位移确定三维蛋白质折叠

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摘要

Site-specific attachment of paramagnetic lanthanide ions to a protein generates pseudocontact shifts (PCS) in the nuclear magnetic resonance (NMR) spectra of the protein that are easily measured as changes in chemical shifts. By labeling the protein with lanthanide tags at four different sites, PCSs are observed for most amide protons and accurate information is obtained about their coordinates in three-dimensional space. The approach is demonstrated with the chaperone ERp29, for which large differences have been reported between X-ray and NMR structures of the C-terminal domain, ERp29-C. The results unambiguously show that the structure of rat ERp29-C in solution is similar to the crystal structure of human ERp29-C. PCSs of backbone amides were the only structural restraints required. Because these can be measured for more dilute protein solutions than other NMR restraints, the approach greatly widens the range of proteins amenable to structural studies in solution. © 2013 Elsevier Ltd. All rights reserved.
机译:顺磁性镧系元素离子与蛋白质的位点特异性结合会在蛋白质的核磁共振(NMR)光谱中产生伪接触位移(PCS),可以通过化学位移的变化轻松测量该伪接触位移。通过在四个不同的位置用镧系元素标签标记蛋白质,可以观察到大多数酰胺质子的PCS并获得有关其在三维空间中坐标的准确信息。伴侣ERp29证明了该方法,据报道,其C端结构域ERp29-C的X射线和NMR结构之间存在很大差异。结果清楚地表明,溶液中大鼠ERp29-C的结构与人ERp29-C的晶体结构相似。主链酰胺的PCS是唯一需要的结构限制。因为可以用比其他NMR约束条件更多的稀释蛋白质溶液来测量这些蛋白质,所以该方法大大拓宽了适合溶液中结构研究的蛋白质范围。 ©2013 ElsevierLtd。保留所有权利。

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