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Phage Selection of Chemically Stabilized α-Helical Peptide Ligands.

Authors :
Diderich P
Bertoldo D
Dessen P
Khan MM
Pizzitola I
Held W
Huelsken J
Heinis C
Source :
ACS chemical biology [ACS Chem Biol] 2016 May 20; Vol. 11 (5), pp. 1422-7. Date of Electronic Publication: 2016 Mar 11.
Publication Year :
2016

Abstract

Short α-helical peptides stabilized by linkages between constituent amino acids offer an attractive format for ligand development. In recent years, a range of excellent ligands based on stabilized α-helices were generated by rational design using α-helical peptides of natural proteins as templates. Herein, we developed a method to engineer chemically stabilized α-helical ligands in a combinatorial fashion. In brief, peptides containing cysteines in position i and i + 4 are genetically encoded by phage display, the cysteines are modified with chemical bridges to impose α-helical conformations, and binders are isolated by affinity selection. We applied the strategy to affinity mature an α-helical peptide binding β-catenin. We succeeded in developing ligands with Kd's as low as 5.2 nM, having >200-fold improved affinity. The strategy is generally applicable for affinity maturation of any α-helical peptide. Compared to hydrocarbon stapled peptides, the herein evolved thioether-bridged peptide ligands can be synthesized more easily, as no unnatural amino acids are required and the cyclization reaction is more efficient and yields no stereoisomers. A further advantage of the thioether-bridged peptide ligands is that they can be expressed recombinantly as fusion proteins.

Details

Language :
English
ISSN :
1554-8937
Volume :
11
Issue :
5
Database :
MEDLINE
Journal :
ACS chemical biology
Publication Type :
Academic Journal
Accession number :
26929989
Full Text :
https://doi.org/10.1021/acschembio.5b00963