A Two-Tailed Phosphopeptide Crystallizes to Form a Lamellar Structure

Publication date

2017-03-13

Authors

Pellach, Michal
Mondal, Sudipta
Harlos, Karl
Mance, DeniISNI 0000000506025003
Baldus, M.ISNI 0000000139673796
Gazit, Ehud
Shimon, Linda J. W.

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Abstract

The crystal structure of a designed phospholipid‐inspired amphiphilic phosphopeptide at 0.8 Å resolution is presented. The phosphorylated β‐hairpin peptide crystallizes to form a lamellar structure that is stabilized by intra‐ and intermolecular hydrogen bonding, including an extended β‐sheet structure, as well as aromatic interactions. This first reported crystal structure of a two‐tailed peptidic bilayer reveals similarities in thickness to a typical phospholipid bilayer. However, water molecules interact with the phosphopeptide in the hydrophilic region of the lattice. Additionally, solid‐state NMR was used to demonstrate correlation between the crystal structure and supramolecular nanostructures. The phosphopeptide was shown to self‐assemble into semi‐elliptical nanosheets, and solid‐state NMR provides insight into the self‐assembly mechanisms. This work brings a new dimension to the structural study of biomimetic amphiphilic peptides with determination of molecular organization at the atomic level.

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Pellach, M, Mondal, S, Harlos, K, Mance, D, Baldus, M, Gazit, E & Shimon, L J W 2017, 'A Two-Tailed Phosphopeptide Crystallizes to Form a Lamellar Structure', Angewandte Chemie-International Edition, vol. 56, no. 12, pp. 3252-3255. https://doi.org/10.1002/anie.201609877