Formation of fibrillar structures through self-assembly of designed peptide turns

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Abstract

Three tripeptides Boc-Phe-Aib-Val-OMe (1), Boc-Leu-Aib-p-NA-NO2 (2) and Boc-Pro-Aib-m-NA-NO2 (3) (Aib: α-aminoisobutyric acid; p- and m-NA: para- and meta-nitroaniline) have been designed by incorporating aromatic rings to study the self-assembly and fibril formation. Single crystal X-ray diffraction studies show that all the peptides adopt turn-like structures that are selfassembled through intermolecular hydrogen bonds and van der Waals interactions to create layers of β-sheets. Solvent dependent NMR titration and CD studies show that the turn structures of the peptides also exist in the solution phase. The field emission scanning electron microscopic (FE-SEM) images of the peptides in the solid state reveal fibrillar structures of flat morphology that are formed through β-sheet mediated self-assembly of the preorganized turn building blocks.

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Kar, S., Drew, M. G. B., & Pramanika, A. (2009). Formation of fibrillar structures through self-assembly of designed peptide turns. Arkivoc, 2009(12), 43–59. https://doi.org/10.3998/ark.5550190.0010.c05

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