Wahlgren N M, Léonil J, Dejmek P, Drakenberg T
Department of Food Technology, University of Lund, Sweden.
Biochim Biophys Acta. 1993 Sep 3;1202(1):121-8. doi: 10.1016/0167-4838(93)90072-y.
The N-terminal 25 amino-acid residue peptide (beta-CN 1-25) obtained from a tryptic digest of bovine beta-casein was studied using two-dimensional NMR techniques. Complete sequence-specific assignment of the 1H-NMR spectrum was performed both in the presence and absence of 22 mM Ca2+. The NMR data supported earlier findings that this segment of beta-casein is highly flexible and adopts multiple conformations. The observed pattern of sequential NOEs indicated that the peptide did not contain stable folded structures. However, the structure was neither that of a fully-extended peptide nor a so-called random coil. The region Ile-12 to SerP-15 showed an enhanced population of extended structure. Furthermore, addition of Ca2+ ions induced chemical-shift changes and apparently decreased the population of conformations with extended structure in the region SerP-18 to Ile-23.
利用二维核磁共振技术研究了从牛β-酪蛋白胰蛋白酶消化产物中获得的N端25个氨基酸残基的肽段(β-CN 1-25)。在存在和不存在22 mM Ca2+的情况下均对1H-NMR谱进行了完整的序列特异性归属。核磁共振数据支持了早期的研究结果,即β-酪蛋白的这一片段具有高度的灵活性并采用多种构象。观察到的连续核Overhauser效应(NOE)模式表明该肽不包含稳定的折叠结构。然而,其结构既不是完全伸展的肽的结构,也不是所谓的无规卷曲的结构。Ile-12至SerP-15区域显示出伸展结构的比例增加。此外,添加Ca2+离子会引起化学位移变化,并明显降低SerP-18至Ile-23区域中具有伸展结构的构象比例。