Forlano Nicola, Bucci Raffaella, Contini Alessandro, Venanzi Mariano, Placidi Ernesto, Gelmi Maria Luisa, Lettieri Raffaella, Gatto Emanuela
Department of Chemical Science and Technologies, University of Rome "Tor Vergata", Via della Ricerca Scientifica, 00133 Roma, Italy.
Department of Pharmaceutical Sciences, University of Milan, Via Venezian 21, 20133 Milan, Italy.
Nanomaterials (Basel). 2023 Jan 13;13(2):333. doi: 10.3390/nano13020333.
Structures composed of alternating α and β amino acids can give rise to peculiar secondary structural motifs, which could self-assemble into complex structures of controlled geometries. This work describes the self-assembly properties of an α,β-peptide, containing three units of H2-(2-F-Phe)-h-PheGly-OH, able to self-organize on surfaces into a fascinating supramolecular rope. This material was characterized by AFM, electronic conduction and fluorescence measurements. Molecular dynamics simulations showed that this hexapeptide can self-assemble into an antiparallel β-sheet layer, stabilized by intermolecular H-bonds, which, in turn, can self-assemble into many side-by-side layers, due to π-π interactions. As a matter of fact, we demonstrated that in this system, the presence of aromatic residues at the intramolecular interface promoted by the alternation of α,β-amino-acids in the primary sequence, endorses the formation of a super-secondary structure where the aromatic groups are close to each other, conferring to the system good electron conduction properties. This work demonstrates the capability and future potential of designing and fabricating distinctive nanostructures and efficient bioelectronic interfaces based on an α,β-peptide, by controlling structure and interaction processes beyond those obtained with α- or β-peptides alone.
由交替的α和β氨基酸组成的结构能够产生奇特的二级结构基序,这些基序可以自组装成具有可控几何形状的复杂结构。这项工作描述了一种α,β-肽的自组装特性,该肽含有三个H2-(2-F-苯丙氨酸)-h-苯丙氨酸甘氨酸-OH单元,能够在表面自组装成一种迷人的超分子绳索。这种材料通过原子力显微镜、电子传导和荧光测量进行了表征。分子动力学模拟表明,这种六肽可以自组装成一个反平行的β-折叠层,通过分子间氢键稳定,而这些氢键又可以由于π-π相互作用自组装成许多并排的层。事实上,我们证明了在这个系统中,一级序列中α,β-氨基酸的交替促进了分子内界面处芳香族残基的存在,支持了一种超二级结构的形成,其中芳香族基团彼此靠近,赋予系统良好的电子传导性能。这项工作展示了基于α,β-肽设计和制造独特纳米结构和高效生物电子界面的能力和未来潜力,通过控制结构和相互作用过程,超越单独使用α-或β-肽所能获得的结果。