Avram and Stella Goldstein-Goren Department of Biotechnology Engineering and The Ilze Katz Institute for Nanoscale Technology, Ben Gurion University of the Negev, P. O. Box 653, Beer-Sheva 84105, Israel.
Chemistry. 2011 Dec 23;17(52):14857-66. doi: 10.1002/chem.201101775. Epub 2011 Nov 22.
There is growing interest in the design of molecules that undergo predictable self-assembly. Bioinspired oligomers with well-defined conformational propensities are attractive from this perspective, since they can be constructed from diverse building blocks, and self-assembly can be directed by the identities and sequence of the subunits. Here we describe the structure of monolayers formed at the air-water interface by amphiphilic α/β-peptides with 1:1 alternation of α- and β-amino acid residues along the backbone. Two of the α/β-peptides, one a dianion and the other a dication, were used to determine differences between self-assemblies of the net negatively and positively charged oligomers. Two additional α/β-peptides, both zwitterionic, were designed to favor assembly in a 1:1 molar ratio mixture with parallel orientation of neighboring strands. Monolayers formed by these α/β-peptides at the air-water interface were characterized by surface pressure-area isotherms, grazing incidence X-ray diffraction (GIXD), atomic force microscopy and ATR-FTIR. GIXD data indicate that the α/β-peptide assemblies exhibited diffraction features similar to those of β-sheet-forming α-peptides. The diffraction data allowed the construction of a detailed model of an antiparallel α/β-peptide sheet with a unique pleated structure. One of the α/β-peptide assemblies displayed high stability, unparalleled among previously studied assemblies of α-peptides. ATR-FTIR data suggest that the 1:1 mixture of zwitterionic α/β-peptides assembled in a parallel arrangement resembling that of a typical parallel β-sheet secondary structure formed by α-peptides. This study establishes guidelines for design of amphiphilic α/β-peptides that assemble in a predictable manner at an air-water interface, with control of interstrand orientation through manipulation of Coulombic interactions along the backbone.
人们对设计可进行预测性自组装的分子越来越感兴趣。从这个角度来看,具有明确构象倾向的仿生齐聚物很有吸引力,因为它们可以由不同的构建块构建而成,并且可以通过亚基的身份和序列来指导自组装。在这里,我们描述了在气-水界面上形成的由具有沿主链交替的α-和β-氨基酸残基的两亲性α/β-肽形成的单层的结构。两种α/β-肽,一种是二价阴离子,另一种是二价阳离子,被用来确定带净负电荷和正电荷的齐聚物自组装之间的差异。另外两种α/β-肽,都是两性离子的,被设计成有利于以平行取向的相邻链的 1:1 摩尔比混合物进行组装。这些α/β-肽在气-水界面上形成的单层通过表面压-面积等温线、掠入射 X 射线衍射 (GIXD)、原子力显微镜和 ATR-FTIR 进行了表征。GIXD 数据表明,α/β-肽组装体表现出与形成β-折叠的α-肽相似的衍射特征。衍射数据允许构建一个具有独特褶皱结构的反平行α/β-肽片的详细模型。α/β-肽组装体之一表现出很高的稳定性,在以前研究的α-肽组装体中是无与伦比的。ATR-FTIR 数据表明,两性离子α/β-肽的 1:1 混合物以类似于由α-肽形成的典型平行β-折叠二级结构的平行排列方式组装。这项研究为设计在气-水界面上以可预测的方式组装的两亲性α/β-肽提供了指导,通过沿主链操纵库仑相互作用来控制链间取向。