Issue 44, 2018

Post-assembly α-helix to β-sheet structural transformation within SAF-p1/p2a peptide nanofibers

Abstract

We report an unanticipated helix-to-sheet structural transformation within an assembly of SAF-p1 and SAF-p2a designer peptides. Solid-state NMR spectroscopic data support the assembled structure that was targeted by rational peptide design: an α-helical coiled-coil co-assembly of both peptides. Subsequent to assembly, however, the system converts to a β-sheet structure that continues to exhibit nearest-neighbor interactions between the two peptide components. The structural transition occurs at pH 7.4 and exhibits strongly temperature-dependent kinetics between room temperature (weeks) and 40 °C (minutes). We further observed evidence of reversibility on the timescale of months at 4 °C. The structural conversion from the anticipated structure to an unexpected structure highlights an important aspect to the challenge of designing peptide assemblies. Furthermore, the conformational switching mechanism mediated by a prerequisite α-helical nanostructure represents a previously unknown route for β-sheet designer peptide assembly.

Graphical abstract: Post-assembly α-helix to β-sheet structural transformation within SAF-p1/p2a peptide nanofibers

Supplementary files

Article information

Article type
Paper
Submitted
27 Aug 2018
Accepted
23 Oct 2018
First published
24 Oct 2018

Soft Matter, 2018,14, 8986-8996

Author version available

Post-assembly α-helix to β-sheet structural transformation within SAF-p1/p2a peptide nanofibers

E. K. Roberts, K. M. Wong, E. J. Lee, M. M. Le, D. M. Patel and A. K. Paravastu, Soft Matter, 2018, 14, 8986 DOI: 10.1039/C8SM01754A

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