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胆红素与重氮甲烷的反应。

The reaction of bilirubin with diazomethane.

作者信息

Kuenzle C C, Weibel M H, Pelloni R R

出版信息

Biochem J. 1973 Jun;133(2):357-64. doi: 10.1042/bj1330357.

Abstract

Dimethoxybilirubin dimethyl ester and monomethoxybilirubin dimethyl ester were prepared by treating bilirubin with diazomethane, and the correctness of the assigned structures was proved by elemental analysis as well as by i.r. and n.m.r. spectroscopy. The phenylazo compounds derived from monomethoxybilirubin dimethyl ester were also prepared and characterized spectroscopically. Dimethoxybilirubin dimethyl ester occurs in solution as a single molecular species, unlike bilirubin dimethyl ester, which in non-polar solvents exists as an equilibrium mixture of conformational isomers. This difference in the behaviour of the two compounds is explained by the absence of intramolecular hydrogen bonds in dimethoxybilirubin dimethyl ester, a situation that allows free rotation about the central methylene bridge, whereas in bilirubin dimethyl ester an internally hydrogen-bonded conformation can be distinguished by n.m.r. spectroscopy from a non-bonded family of rotamers. This finding is regarded as additional evidence for a newly conceived conformational structure of bilirubin and bilirubin dimethyl ester that is maximally stabilized by intramolecular hydrogen bonds. This is discussed in detail in the Appendix (Kuenzle et al., 1973), which also includes a description of the molecular mechanism pertaining to the reaction of bilirubin with diazomethane.

摘要

用重氮甲烷处理胆红素制备了二甲氧基胆红素二甲酯和单甲氧基胆红素二甲酯,并通过元素分析以及红外光谱和核磁共振光谱证明了所指定结构的正确性。还制备了源自单甲氧基胆红素二甲酯的苯基偶氮化合物,并通过光谱对其进行了表征。与胆红素二甲酯不同,二甲氧基胆红素二甲酯在溶液中以单一分子形式存在,胆红素二甲酯在非极性溶剂中以构象异构体的平衡混合物形式存在。这两种化合物行为上的差异是由于二甲氧基胆红素二甲酯中不存在分子内氢键,这种情况允许围绕中心亚甲基桥自由旋转,而在胆红素二甲酯中,通过核磁共振光谱可以区分分子内氢键构象和非键合旋转异构体家族。这一发现被视为胆红素和胆红素二甲酯新构想的构象结构的额外证据,该构象结构通过分子内氢键得到最大程度的稳定。附录(Kuenzle等人,1973年)对此进行了详细讨论,其中还包括胆红素与重氮甲烷反应的分子机制描述。

相似文献

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The reaction of bilirubin with diazomethane.胆红素与重氮甲烷的反应。
Biochem J. 1973 Jun;133(2):357-64. doi: 10.1042/bj1330357.
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Exciton chirality of bilirubin homologs.
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