Issue 19, 2013

Self-assembly of a model amphiphilic oligopeptide incorporating an arginine headgroup

Abstract

The self-assembly in aqueous solution of the alanine-rich peptide A12R2 containing twelve alanine residues and two arginine residues has been investigated. This oligomeric peptide was synthesized via NCA-polymerization methods. The surfactant-like peptide is found via FTIR to form antiparallel dimers which aggregate into twisted fibrils, as revealed by cryogenic-transmission electron microscopy. The fibril substructure is probed via detailed X-ray scattering experiments, and are uniquely comprised of twisted tapes only 5 nm wide, set by the width of the antiparallel A12R2 dimers. The packing of the alanine residues leads to distinct “β-sheet” spacings compared to those for amyloid-forming peptides. For this peptide, β-sheet structure coexists with some α-helical content. These ultrafine amyloid fibrils present arginine at high density on their surfaces, and this may lead to applications in nanobiotechnology.

Graphical abstract: Self-assembly of a model amphiphilic oligopeptide incorporating an arginine headgroup

Supplementary files

Article information

Article type
Paper
Submitted
29 Jan 2013
Accepted
18 Mar 2013
First published
28 Mar 2013
This article is Open Access

Soft Matter, 2013,9, 4794-4801

Self-assembly of a model amphiphilic oligopeptide incorporating an arginine headgroup

I. W. Hamley, A. Dehsorkhi, V. Castelletto, J. Seitsonen, J. Ruokolainen and H. Iatrou, Soft Matter, 2013, 9, 4794 DOI: 10.1039/C3SM50303H

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