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Recent developments in the ~(13)C NMR spectroscopic analysis of paramagnetic hemes and heme proteins

机译:〜(13)C NMR光谱分析顺磁性血红素和血红素蛋白的最新进展

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摘要

Despite the wealth of information that has been obtained from the study of paramagnetic hemes and heme proteins by ~1H NMR spectroscopy, there are certain limitations imposed by the nature of paramagnetically affected resonances that are difficult to overcome. Although it has long been recognized that ~(13)C NMR spectroscopy is likely to be a powerful complementary technique to overcome some of these limitations, the low sensitivity and low natural abundance of 13C nuclei has resulted in a lag in the application of ~(13)C NMR spectroscopy to the study of paramagnetic hemes and heme proteins. The tremendous advances in methodology and instrumentation witnessed in the NMR field, coupled to the advent of recombinant DNA methods that have made possible the preparation and purification of significant quantities of proteins, and the biosynthesis of ~(13)C-labeled heme, have contributed to an increased interest in the study of paramagnetic heme active sites by ~(13)C NMR spectroscopy. As a consequence, ~(13)C NMR spectroscopy is emerging as a powerful tool to study heme electronic structure and structure-function relationships in heme-containing proteins. In this report we strive to summarize some of the recent developments in the analysis of paramagnetic hemes and heme-containing proteins by ~(13)C NMR spectroscopy.
机译:尽管通过〜1 H NMR光谱研究顺磁性血红素和血红素蛋白已获得了大量信息,但顺磁性影响的共振的性质仍存在某些局限性,这些局限性难以克服。尽管人们早已认识到〜(13)C NMR光谱法可能是克服这些局限性的有力补充技术,但是13C核的低灵敏度和低自然丰度导致〜( 13)C NMR光谱研究顺磁性血红素和血红素蛋白。 NMR领域见证了方法学和仪器学的巨大进步,再加上重组DNA方法的出现,重组的DNA方法使得制备和纯化大量蛋白质成为可能,〜(13)C标记的血红素的生物合成也做出了贡献对〜(13)C NMR光谱研究顺磁性血红素活性位点的兴趣增加。结果,〜(13)C NMR谱仪正在成为研究含血红素蛋白中血红素电子结构和结构-功能关系的有力工具。在本报告中,我们努力总结一些通过〜(13)C NMR光谱分析顺磁性血红素和含血红素的蛋白质的最新进展。

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