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首页> 外文期刊>European Biophysics Journal >A new method to determine the structure of the metal environment in metalloproteins: investigation of the prion protein octapeptide repeat Cu2+ complex
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A new method to determine the structure of the metal environment in metalloproteins: investigation of the prion protein octapeptide repeat Cu2+ complex

机译:确定金属蛋白金属环境结构的新方法:investigation蛋白蛋白八肽重复序列Cu2 +复合物的研究

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摘要

Since high-intensity synchrotron radiation is available, "extended X-ray absorption fine structure" spectroscopy (EXAFS) is used for detailed structural analysis of metal ion environments in proteins. However, the information acquired is often insufficient to obtain an unambiguous picture. ENDOR spectroscopy allows the determination of hydrogen positions around a metal ion. However, again the structural information is limited. In the present study, a method is proposed which combines computations with spectroscopic data from EXAFS, EPR, electron nuclear double resonance (ENDOR) and electron spin echo envelope modulation (ESEEM). From EXAFS a first picture of the nearest coordination shell is derived which has to be compatible with EPR data. Computations are used to select sterically possible structures, from which in turn structures with correct H and N positions are selected by ENDOR and ESEEM measurements. Finally, EXAFS spectra are re-calculated and compared with the experimental data. This procedure was successfully applied for structure determination of the Cu2+ complex of the octapeptide repeat of the human prion protein. The structure of this octarepeat complex is rather similar to a pentapeptide complex which was determined by X-ray structure analysis. However, the tryptophan residue has a different orientation: the axial water is on the other side of the Cu.
机译:由于可获得高强度同步加速器辐射,因此“扩展X射线吸收精细结构”光谱(EXAFS)用于蛋白质中金属离子环境的详细结构分析。但是,所获取的信息通常不足以获得清晰的图像。 ENDOR光谱法可以确定金属离子周围的氢位置。但是,结构信息再次受到限制。在本研究中,提出了一种将计算与EXAFS,EPR,电子核双共振(ENDOR)和电子自旋回波包络调制(ESEEM)的光谱数据相结合的方法。从EXAFS中得出最接近的协调外壳的第一张图片,该图片必须与EPR数据兼容。计算用于选择空间上可能的结构,然后通过ENDOR和ESEEM测量从中选择具有正确的H和N位置的结构。最后,重新计算EXAFS光谱并将其与实验数据进行比较。该程序已成功用于人病毒蛋白八肽重复序列的Cu2 +复合物的结构测定。该八面体复合物的结构与通过X射线结构分析确定的五肽复合物相当相似。但是,色氨酸残基具有不同的方向:轴向水在Cu的另一侧。

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