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通过高场电子顺磁共振(EPR)、电子核双共振(ENDOR)和31P核磁共振(NMR)光谱检测到的人类H-Ras的构象状态。

Conformational states of human H-Ras detected by high-field EPR, ENDOR, and 31P NMR spectroscopy.

作者信息

Spoerner Michael, Prisner Thomas F, Bennati Marina, Hertel Melanie M, Weiden Norbert, Schweins Thomas, Kalbitzer Hans Robert

机构信息

Institute for Biophysics and Physical Biochemistry, University of Regensburg, Germany.

出版信息

Magn Reson Chem. 2005 Nov;43 Spec no.:S74-83. doi: 10.1002/mrc.1693.

Abstract

Ras is a central constituent of the intracellular signal transduction that switches between its inactive state with GDP bound and its active state with GTP bound. A number of different X-ray structures are available. Different magnetic resonance techniques were used to characterise the conformational states of the protein and are summarised here. 31P NMR spectroscopy was used as probe for the environment of the phosphate groups of the bound nucleotide. It shows that in liquid solution additional conformational states in the GDP as well as in the GTP forms coexist which are not detected by X-ray crystallography. Some of them can also be detected by solid-state NMR in the micro crystalline state. EPR and ENDOR spectroscopy were used to probe the environment of the divalent metal ion (Mg2+ was replaced by Mn2+) bound to the nucleotide in the protein. Here again different states could be observed. Substitution of normal water by 17O-enriched water allowed the determination of the number of water molecules in the first coordination sphere of the metal ion. In liquid solution, they indicate again the existence of different conformational states. At low temperatures in the frozen state ENDOR spectroscopy suggests that only one state exists for the GDP- and GTP-bound form of Ras, respectively.

摘要

Ras是细胞内信号转导的核心组成部分,它在结合GDP的非活性状态和结合GTP的活性状态之间切换。有许多不同的X射线结构可供使用。不同的磁共振技术被用于表征该蛋白质的构象状态,在此进行总结。31P NMR光谱被用作结合核苷酸磷酸基团环境的探针。结果表明,在液体溶液中,GDP形式和GTP形式都存在额外的构象状态,而这些状态在X射线晶体学中未被检测到。其中一些状态在微晶状态下也可以通过固态NMR检测到。EPR和ENDOR光谱被用于探测与蛋白质中核苷酸结合的二价金属离子(Mg2+被Mn2+取代)的环境。在此同样可以观察到不同的状态。用富含17O的水替代普通水,可以确定金属离子第一配位层中的水分子数量。在液体溶液中,它们再次表明存在不同的构象状态。在冷冻状态下的低温时,ENDOR光谱表明,Ras结合GDP和GTP的形式分别只存在一种状态。

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