Centro Singular de Investigación en Química Biolóxica e, Materiais Moleculares (CIQUS), Departamento de Química Orgánica, Universidade de Santiago de Compostela, 15782, Santiago de Compostela, Spain.
Chemistry. 2020 May 7;26(26):5846-5858. doi: 10.1002/chem.201905554. Epub 2020 Apr 21.
Cyclic peptides with disc-shaped structures have emerged as potent building blocks for the preparation of new biomaterials in fields ranging from biological to material science. In this work, we analyze in depth the self-assembling properties of a new type of cyclic peptides based on the alternation of α-residues and cyclic δ-amino acids (α,δ-CPs). To examine the preferred stacking properties adopted by cyclic peptides bearing this type of amino acids, we carried out a synergistic in vitro/in silico approximation by using simple dimeric models and then extended to nanotubes. Although these new cyclic peptides (α,δ-CPs) can interact either in a parallel or antiparallel fashion, our results confirm that although the parallel β-sheet is more stable, it can be switched to the antiparallel stacking by choosing residues that can establish favorable cross-strand interactions. Moreover, the subsequent comparison by using the same methodology but applied to α,γ-CPs models, up to the moment assumed as antiparallel-like d,l-α-CPs, led to unforeseen conclusions that put into question preliminary conjectures about these systems. Surprisingly, they tend to adopt a parallel β-sheet directed by the skeleton interactions. These results imply a change of paradigm with respect to cyclic peptide designs that should be considered for dimers and nanotubes.
具有盘状结构的环状肽已成为从生物学到材料科学等领域制备新型生物材料的有力构建模块。在这项工作中,我们深入分析了基于交替使用α-残基和环状δ-氨基酸(α,δ-CPs)的新型环状肽的自组装特性。为了研究具有这种类型氨基酸的环状肽所采用的优先堆积特性,我们通过使用简单的二聚体模型并将其扩展到纳米管,进行了协同的体外/计算近似。尽管这些新型环状肽(α,δ-CPs)可以平行或反平行方式相互作用,但我们的结果证实,尽管平行β-折叠更稳定,但可以通过选择可以建立有利的跨链相互作用的残基来将其切换为反平行堆积。此外,通过使用相同的方法但应用于 α,γ-CPs 模型进行的后续比较,直到目前为止,这些模型被认为类似于反平行的 d,l-α-CPs,得出了意想不到的结论,这些结论对这些系统的初步假设提出了质疑。令人惊讶的是,它们倾向于通过骨架相互作用采用平行的β-折叠。这些结果意味着环状肽设计的范式发生了变化,应该考虑将其用于二聚体和纳米管。