Haruyama H, Wüthrich K
Institut für Molekularbiologie und Biophysik, Eidgenössiche Technische Hochschule--Hönggerberg, Zürich, Switzerland.
Biochemistry. 1989 May 16;28(10):4301-12. doi: 10.1021/bi00436a027.
The three-dimensional structure of recombinant desulfatohirudin in aqueous solution was determined by 1H nuclear magnetic resonance at 600 MHz and distance geometry calculations with the program DISMAN. The input for the structure calculations was prepared on the basis of complete sequence-specific resonance assignments at pH 4.5 and 22 degrees C and consisted of 425 distance constraints from nuclear Overhauser enhancements and 159 supplementary constraints from spin-spin coupling constants and from the identification of intramolecular hydrogen bonds. Residues 3-30 and 37-48 form a molecular core with two antiparallel beta-sheets and several well-defined turns. The three disulfide bonds 6-14, 16-28, and 22-39 were identified by NMR. In contrast to this well-defined molecular core, with an average root mean square distance for the polypeptide backbone of 0.8 A for a group of nine DISMAN solutions, no preferred conformation was found for the C-terminal segment 49-65, and a loop consisting of residues 31-36 is not uniquely constrained by the NMR data either. These structural properties of recombinant desulfatohirudin coincide closely with the previously described solution conformation of natural hirudin, but the presence of localized differences is indicated by chemical shift differences for residues Asp 5, Ser 9, Leu 15, Asp 53, Gly 54, and Asp 55.
通过在600兆赫下的1H核磁共振以及使用DISMAN程序进行距离几何计算,确定了重组去硫酸水蛭素在水溶液中的三维结构。结构计算的输入是基于在pH 4.5和22摄氏度下完整的序列特异性共振归属而准备的,包括来自核Overhauser效应的425个距离约束以及来自自旋 - 自旋耦合常数和分子内氢键识别的159个补充约束。残基3 - 30和37 - 48形成一个具有两个反平行β折叠和几个明确转角的分子核心。通过核磁共振确定了三条二硫键6 - 14、16 - 28和22 - 39。与这个明确的分子核心形成对比的是,对于一组九个DISMAN溶液,多肽主链的平均均方根距离为0.8埃,而C末端片段49 - 65未发现优选构象,并且由残基31 - 36组成的环也未被核磁共振数据唯一约束。重组去硫酸水蛭素的这些结构特性与先前描述的天然水蛭素的溶液构象密切相符,但通过残基Asp 5、Ser 9、Leu 15、Asp 53、Gly 54和Asp 55的化学位移差异表明存在局部差异。