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Formation of Ordered Biomolecular Structures by the Self-assembly of Short Peptides
Published on: November 21, 2013
A protein-foldamer supramolecular synthon for self-assembled hybrid architectures
Johannes Sigl1, Vasily Morozov1, Lingfei Wang1
1Department of Pharmacy, Ludwig-Maximilians-Universität München, Munich, Germany.
None:
Constructing artificial assemblies that combine proteins and synthetic ligands has been hampered by the lack of protein-ligand interfaces that are sufficiently large and organized to enable precise structural control. Here ribosome display selection is used to identify a protein that binds a helical aromatic foldamer both tightly and selectively through a sizeable surface area. We used this complex as a supramolecular synthon to create well-defined hybrid foldamer-protein architectures. Examples include foldamers that bind two proteins and hold them at a precise distance, proteins that bind two foldamers and crystals in which proteins and foldamers are connected in cyclic or infinite arrays. The modularity of aromatic foldamers brings a further dimension to protein-based assemblies.
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