Ye Shixin, Strzalka Joseph W, Discher Bohdana M, Noy Dror, Zheng Songyan, Dutton P Leslie, Blasie J Kent
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Langmuir. 2004 Jul 6;20(14):5897-904. doi: 10.1021/la0363884.
Artificial peptides previously designed to possess alpha-helical bundle motifs have been either hydrophilic (i.e., soluble in polar media) or lipophilic (i.e., soluble in nonpolar media) in overall character. Realizations of these bioinspired bundles have succeeded in reproducing a variety of biomimetic functionality within the appropriate media. However, to translate their functionality into any biomolecular device applications at the macroscopic level, the bundles must be oriented in an ensemble, for example, at an interface. This goal has been realized in a new family of alpha-helical bundle peptides which are amphiphilic; namely, they assemble into 4-helix bundles with well-defined hydrophilic and hydrophobic domains. These peptides are capable of binding metalloporphyrin prosthetic groups at selected locations within these domains. We describe here the realization of one of the first members of this family, AP0, successfully designed for vectorial incorporation into soft interfaces between polar and nonpolar media.
先前设计的具有α-螺旋束基序的人工肽,其整体性质要么是亲水性的(即可溶于极性介质),要么是亲脂性的(即可溶于非极性介质)。这些受生物启发的束状结构已经成功地在合适的介质中重现了多种仿生功能。然而,要将它们的功能转化为宏观层面的任何生物分子器件应用,这些束状结构必须整体定向,例如在界面处。这一目标已在一类新的两亲性α-螺旋束肽中得以实现;也就是说,它们组装成具有明确亲水性和疏水性结构域的四螺旋束。这些肽能够在这些结构域内的选定位置结合金属卟啉辅基。我们在此描述该家族首批成员之一AP0的实现情况,它被成功设计用于向量式掺入极性和非极性介质之间的软界面。