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通过核磁共振对胆红素及其二甲酯在二甲亚砜溶液中的构象进行研究。

Studies of the conformation of bilirubin and its dimethyl ester in dimethyl sulphoxide solutions by nuclear magnetic resonance.

作者信息

Kaplan D, Navon G

出版信息

Biochem J. 1982 Mar 1;201(3):605-13. doi: 10.1042/bj2010605.

Abstract

The conformation of bilirubin and its dimethyl ester in dimethyl sulphoxide (DMSO) was investigated by n.m.r. spectroscopy. The chemical shifts of the pyrrole NH and Lactam protons of bilirubin and its dimethyl ester in DMSO indicate a strong interaction with the solvent. Inter-proton distances were calculated from nuclear Overhauser effects (NOE), selective and non-selective relaxation times (T1) and rotational correlation times taken from 13C relaxation times. The interproton distances indicate that the conformation of the skeleton of bilirubin and its dimethyl ester in DMSO is similar to that of bilirubin and mesobilirubin in the crystalline state and in chloroform solutions, except for a possible slight twist of the pyrrolenone rings about the methine bonds, which may be a consequence of solvation of the NH groups by DMSO. Unlike in chloroform solutions, no direct hydrogen-bonding occurs between the carboxylic acid and the lactam groups of bilirubin in DMSO, as shown by the absence of an NOE between these groups. The fast exchange of the pyrrole NH protons with 2H shows that no hydrogen-bonding occurs between these protons and the propionic residues, in line with their solvation by DMSO. From the above results, and from the slowness of the internal motion of the propionic residues of bilirubin and its dimethyl ester, it is concluded that these residues are tied to the skeleton via bound solvent molecules.

摘要

通过核磁共振光谱研究了胆红素及其二甲酯在二甲亚砜(DMSO)中的构象。胆红素及其二甲酯在DMSO中吡咯NH和内酰胺质子的化学位移表明与溶剂有强烈相互作用。质子间距离由核Overhauser效应(NOE)、选择性和非选择性弛豫时间(T1)以及从13C弛豫时间获得的旋转相关时间计算得出。质子间距离表明,胆红素及其二甲酯在DMSO中的骨架构象与胆红素和中胆红素在结晶态和氯仿溶液中的构象相似,只是吡咯烯酮环围绕次甲基键可能有轻微扭曲,这可能是DMSO使NH基团溶剂化的结果。与氯仿溶液不同,DMSO中胆红素的羧酸基团和内酰胺基团之间没有直接氢键形成,这由这些基团之间不存在NOE表明。吡咯NH质子与2H的快速交换表明这些质子与丙酸残基之间没有氢键形成,这与它们被DMSO溶剂化一致。根据上述结果以及胆红素及其二甲酯丙酸残基内部运动的缓慢程度,可以得出结论,这些残基通过结合的溶剂分子与骨架相连。

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