Hierarchical approach for the rational construction of helix-containing nanofibrils using α,β-peptides

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Abstract

The rational design of novel self-Assembled nanomaterials based on peptides remains a great challenge in modern chemistry. A hierarchical approach for the construction of nanofibrils based on α,β-peptide foldamers is proposed. The incorporation of a helix-promoting trans-(1S,2S)-2-Aminocyclopentanecarboxylic acid residue in the outer positions of the model coiled-coil peptide led to its increased conformational stability, which was established consistently by the results of CD, NMR and FT-IR spectroscopy. The designed oligomerization state in the solution of the studied peptides was confirmed using analytical ultracentrifugation. Moreover, the cyclopentane side chain allowed additional interactions between coiled-coil-like structures to direct the self-Assembly process towards the formation of well-defined nanofibrils, as observed using AFM and TEM techniques. This journal is.

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Szefczyk, M., Szulc, N., Gąsior-Głogowska, M., Modrak-Wójcik, A., Bzowska, A., Majstrzyk, W., … Berlicki, Ł. (2021). Hierarchical approach for the rational construction of helix-containing nanofibrils using α,β-peptides. Nanoscale, 13(7), 4000–4015. https://doi.org/10.1039/d0nr04313c

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