Krause E, Beyermann M, Fabian H, Dathe M, Rothemund S, Bienert M
Research Institute for Molecular Pharmacology, Berlin, Germany.
Int J Pept Protein Res. 1996 Dec;48(6):559-68. doi: 10.1111/j.1399-3011.1996.tb00875.x.
Among peptide secondary structures beta-sheet domains have been much less intensively studied than alpha-helical conformations, mainly because of the lack of well characterized model peptides. In the present paper the secondary structure of a water-soluble de novo peptide consisting of 26 amino acids (DPKGDPKGVTVTVTVTVTGKGDPKPD-NH2) and the corresponding double D-amino acid replacement set have been studied by circular dichroism and Fourier-transform infrared spectroscopy. The model peptide was found to be unstructured in aqueous solution at peptide concentrations < 10(-3) mol/L but to adopt a predominantly beta-sheet structure in the presence of 15 mM sodium dodecyl sulfate or at apolar/water interfaces. Although the peptide is composed of amino acids with low helical propensity, it formed a single-stranded helical structure in aqueous trifluoroethanol. The D-amino acid replacement set was synthesized in order to study the conformational stability of the model peptide selectively in distinct regions. The data show that both the alpha-helix present in 50% trifluoroethanol as well as the beta-sheet domain formed in the presence of sodium dodecyl sulfate or at apolar/water interfaces, are located in the region between Val9 and Thr18. Pairwise substitution of adjacent amino acids by their corresponding D-amino acids provides a pronounced beta-sheet disturbance. These findings demonstrate that double D-amino acid replacements may be used to locate beta-sheet domains in peptides.
在肽的二级结构中,β-折叠结构域的研究强度远低于α-螺旋构象,主要原因是缺乏特征明确的模型肽。在本文中,通过圆二色光谱和傅里叶变换红外光谱研究了一种由26个氨基酸组成的水溶性从头合成肽(DPKGDPKGVTVTVTVTVTGKGDPKPD-NH2)及其相应的双D-氨基酸替代物的二级结构。发现该模型肽在肽浓度<10(-3) mol/L的水溶液中无结构,但在存在15 mM十二烷基硫酸钠或在非极性/水界面时主要采用β-折叠结构。尽管该肽由具有低螺旋倾向的氨基酸组成,但它在三氟乙醇水溶液中形成了单链螺旋结构。合成双D-氨基酸替代物是为了在不同区域选择性地研究模型肽的构象稳定性。数据表明,存在于50%三氟乙醇中的α-螺旋以及在十二烷基硫酸钠存在下或在非极性/水界面形成的β-折叠结构域都位于Val9和Thr18之间的区域。相邻氨基酸被其相应的D-氨基酸成对替代会导致明显的β-折叠干扰。这些发现表明,双D-氨基酸替代可用于定位肽中的β-折叠结构域。