McLeish M J, Nielsen K J, Najbar L V, Wade J D, Lin F, Doughty M B, Craik D J
School of Pharmaceutical Chemistry, Victorian College of Pharmacy, Monash University, Parkville, Australia.
Biochemistry. 1994 Sep 20;33(37):11174-83. doi: 10.1021/bi00203a013.
The conformation, in solution, of a peptide corresponding to residues 59-81 from T4 lysozyme [LYS(59-81)] has been determined by 1H NMR and CD spectroscopy. This peptide spans the region corresponding to helix C in the crystal structure of T4 lysozyme. Secondary structure predictions indicated that the peptide would possibly be helical in an aqueous environment, but in a more hydrophobic environment the peptide would certainly adopt a helical conformation. This prediction was confirmed by the far-UV CD and NMR studies, which showed the peptide to be relatively unstructured in aqueous solution and significantly helical in the presence of either TFE or SDS micelles, although the 1H NMR results did give some indication of the presence of nascent helix in aqueous solution. For LYS(59-81), in TFE, the three-dimensional structure derived from the NMR data showed that the helix had a more pronounced curvature than the gradual bend observed in the crystal structure.
通过1H NMR和CD光谱法测定了与T4溶菌酶[LYS(59 - 81)]中59 - 81位残基相对应的肽段在溶液中的构象。该肽段跨越T4溶菌酶晶体结构中对应于螺旋C的区域。二级结构预测表明,该肽段在水性环境中可能呈螺旋状,但在更疏水的环境中肯定会呈现螺旋构象。远紫外CD和NMR研究证实了这一预测,结果表明该肽段在水溶液中相对无结构,而在TFE或SDS胶束存在下显著呈螺旋状,尽管1H NMR结果确实给出了水溶液中存在新生螺旋的一些迹象。对于LYS(59 - 81),在TFE中,由NMR数据推导的三维结构表明,该螺旋的曲率比晶体结构中观察到的逐渐弯曲更明显。