利用螺旋肽进行超分子组装

Katsuhiko Fujita , Shunsaku Kimura , Yukio Imanishi , Elmar Rump , Helmut Ringsdorf
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引用次数: 8

摘要

我们研究了各种疏水螺旋肽的超分子组装。这些组合在空气/水界面或水介质中形成。六肽Boc-(Ala-Aib)8-OMe (BA16M)经x射线分析呈α-螺旋结构。制备了几种具有重复序列Ala-Aib、Lys(Z)-Aib或Leu-Aib的衍生物,或对其末端进行了化学修饰。多肽在乙醇溶液中呈螺旋形。肽单分子层的表面压力-面积等温线在螺旋轴截面对应的表面出现弯曲,进一步压缩使肽单分子层坍塌。根据传递到底物上的单层膜的透射红外光谱和RAS结果,所有螺旋肽的螺旋轴取向均平行于空气/水界面。在BA16M及其衍生物的等温线上观察到一个小丘,这是由液态到固态的相变所致。将1 mol%的fitc标记肽混合到单层中,观察共存区表面压力下固液相分离情况。荧光显微镜在等温线的丘顶观察到各种形状的暗域。当螺旋肽被压缩到固体状态时,在空气/水界面形成二维晶体。用超声法将氨基端螺旋肽HA16B悬浮在水介质中,得到透明分散体。动态光散射测试表明,该材料的粒径为75 nm,粒径分布较窄。螺旋肽在水中的分子组装被称为“肽体”,因为它具有囊泡结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Supramolecular assembly using helical peptides

We investigated supramolecular assemblies of various hydrophobic helical peptides. The assemblies were formed at the air/water interface or in aqueous medium. The hexadecapeptide, Boc-(Ala-Aib)8-OMe (BA16M), was reported to take α-helical structure by X-ray analysis. Several derivatives were prepared, which have the repeating sequence of Ala-Aib, Lys(Z)-Aib or Leu-Aib, or have the terminal chemically modified. CD spectra of the peptides indicated helical conformation in ethanol solution. The surface pressure-area isotherms of the peptide monolayers showed an inflection at the surface area corresponding to the cross section along the helix axis, and the monolayers were collapsed by further compression. All the helical peptides oriented their helix axis parallel to the air/water interface on the basis of the results of transmission IR spectra and RAS of the monolayers transferred onto substrates.

A small mound was observed in the isotherm of BA16M and other derivatives, which was ascribed to the phase transition from the liquid state to the solid state. One mol% of FITC-labeled peptide was mixed into the monolayers to visualize the phase separation of the solid and liquid states at the surface pressure of the coexisting region. Various shapes of the dark domain were observed at the top of the mound in the isotherms by fluorescence microscopy. The helical peptides formed two-dimensional crystals at the air/water interface when they were compressed to the solid state.

An amino-terminated helical peptide, HA16B, was suspended in an aqueous medium by a sonication method and transparent dispersion was obtained. The dynamic light scattering measurement of the dispersion revealed the particle size of 75 nm with a narrow size distribution. The molecular assembly of the helical peptide in water was called “Peptosome”, because it takes a vesicular structure.

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