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通过核磁共振谱的溶剂扰动探测蛋白质结构。通过顺磁弛豫过滤进行蛋白质的核磁共振谱编辑和拓扑映射。

Probing protein structure by solvent perturbation of nuclear magnetic resonance spectra. Nuclear magnetic resonance spectral editing and topological mapping in proteins by paramagnetic relaxation filtering.

作者信息

Esposito G, Lesk A M, Molinari H, Motta A, Niccolai N, Pastore A

机构信息

Instituto di Biologia, Facoltà di Medicina, Università di Udine, Italy.

出版信息

J Mol Biol. 1992 Apr 5;224(3):659-70. doi: 10.1016/0022-2836(92)90551-t.

Abstract

Soluble spin labels, which "bleach" the surface proton resonances of a protein to n.m.r. measurements, can provide useful information about protein conformation and dynamics. The use of the soluble nitroxide, TEMPOL, has been explored to show the correlation of the paramagnetic perturbations of protein two-dimensional n.m.r. data with proton exposure to the free radical in hen egg-white lysozyme. The results demonstrate that the nitroxide approaches the protein randomly, and that the extent of the observed paramagnetic effects reflects the native folding pattern of the protein. A correlation of spectral simplification with the known tertiary structure establishes the feasibility of new strategies for topological mapping of surface and buried protons of the protein. Application to the elucidation of protein structure and to the study of dynamical processes is discussed.

摘要

可溶性自旋标记物能够使蛋白质的表面质子共振在核磁共振测量中“漂白”,从而可以提供有关蛋白质构象和动力学的有用信息。人们已经探索使用可溶性氮氧化物TEMPOL来显示蛋白质二维核磁共振数据的顺磁扰动与蛋清溶菌酶中质子与自由基接触之间的相关性。结果表明,该氮氧化物随机接近蛋白质,并且观察到的顺磁效应程度反映了蛋白质的天然折叠模式。光谱简化与已知三级结构之间的相关性确立了蛋白质表面和埋藏质子拓扑映射新策略的可行性。文中还讨论了其在阐明蛋白质结构和研究动力学过程中的应用。

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