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  4. Structurally Diverse Cyclisation Linkers Impose Different Backbone Conformations in Bicyclic Peptides
 
research article

Structurally Diverse Cyclisation Linkers Impose Different Backbone Conformations in Bicyclic Peptides

Chen, Shiyu  
•
Morales-Sanfrutos, Julia  
•
Angelini, Alessandro  
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2012
Chembiochem

Combinatorial libraries of structurally diverse peptide macrocycles offer a rich source for the development of high-affinity ligands to targets of interest. In this work we have developed linkers for the generation of genetically encoded bicyclic peptides and tested whether the peptides cyclised by them have significant variations in their backbone conformations. Two new cyclisation reagents, each containing three thiol-reactive groups, efficiently and selectively cyclised linear peptides containing three cysteine moieties. When the mesitylene linker of the bicyclic peptide PK15, a potent inhibitor of plasma kallikrein (Ki=2 nM), was replaced by the new linkers, its inhibitory activity dropped by a factor of more than 1000, suggesting that the linkers impose different conformations on the peptide. Indeed, structural analysis by solution-state NMR revealed different NOE constraints in the three bicyclic peptides, indicating that these relatively small linkers at the centres of bicyclic peptide structures significantly influence the conformations of the peptides. These results demonstrate the prominent structural role of linkers in peptide macrocycles and suggest that application of different cyclisation linkers in a combinatorial fashion could be an attractive means to generate topologically diverse macrocycle libraries.

  • Details
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Type
research article
DOI
10.1002/cbic.201200049
Web of Science ID

WOS:000303191900015

Author(s)
Chen, Shiyu  
Morales-Sanfrutos, Julia  
Angelini, Alessandro  
Cutting, Brian
Heinis, Christian  
Date Issued

2012

Published in
Chembiochem
Volume

13

Start page

1032

End page

1038

Subjects

bicyclic peptides

•

cyclization

•

peptide conformations

•

peptides

•

phage display

•

Protein Epitope Mimetics

•

Cyclic-Peptides

•

Design

•

Inhibitors

•

Surfaces

•

Affinity

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPPT  
Available on Infoscience
May 18, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/80583
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