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黄素的15N核磁共振

15N nuclear magnetic resonance of flavins.

作者信息

Yagi K, Ohishi N, Kyogoku Y

出版信息

Biochemistry. 1976 Jun 29;15(13):2877-80. doi: 10.1021/bi00658a027.

Abstract

Ninety-nine percent 15N-enriched flavins were synthesized and their proton decoupled 15N resonances were observed. The enriched compounds were [1,3-15N]riboflavin, [1,3,5-15N]riboflavin, [1,3-15N]riboflavin 5'-phosphate, [1,3,5-15N]riboflavin 5'-phosphate, and [1,3,5-15N] flavin adenine dinucleotide, [1,3,5-15N] lumiflavin, and [1,3,5-15N] lumichrome. By comparison of their spectra and from th- nuclear Overhauser effect data each 15N resonance peak could be assigned to each 15N nucleus. The order of the chemical shifts well corresponds to that of the calculated pi-electron densities. The N-3 nucleus gives the most intense inverted peak and the N-5 nucleus a small noninverted peak. By changing pH from neutral to alkaline, the chemical shift and the intensity of signal were mostly affected in the N-3 resonance of riboflavin 5'-phosphate. The N-5 signal of flavin adenine dinucleotide showed a fairly large downfield shift with the increase of temperature. These observations can be well interpreted by the chemical structure and the proposed conformation of riboflavin 5'-phosphate and flavin adenine dinucleotide.

摘要

合成了99%的15N富集黄素,并观察到它们的质子去耦15N共振。富集的化合物有[1,3-15N]核黄素、[1,3,5-15N]核黄素、[1,3-15N]核黄素5'-磷酸、[1,3,5-15N]核黄素5'-磷酸、[1,3,5-15N]黄素腺嘌呤二核苷酸、[1,3,5-15N]光黄素和[1,3,5-15N]光色素。通过比较它们的光谱以及根据核Overhauser效应数据,每个15N共振峰都可以归属到每个15N核上。化学位移的顺序与计算得到的π电子密度顺序非常吻合。N-3核给出最强的倒置峰,N-5核给出一个小的非倒置峰。将pH从中性变为碱性时,核黄素5'-磷酸的N-3共振中的化学位移和信号强度大多受到影响。随着温度升高,黄素腺嘌呤二核苷酸的N-5信号出现相当大的向低场移动。这些观察结果可以通过核黄素5'-磷酸和黄素腺嘌呤二核苷酸的化学结构及所提出的构象得到很好的解释。

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