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  4. Thiol-to-amine cyclization reaction enables screening of large libraries of macrocyclic compounds and the generation of sub-kilodalton ligands
 
research article

Thiol-to-amine cyclization reaction enables screening of large libraries of macrocyclic compounds and the generation of sub-kilodalton ligands

Kale, S. S.  
•
Bergeron-Brlek, M.  
•
Wu, Y.
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August 21, 2019
Science Advances

Macrocyclic compounds are an attractive modality for drug development, but the limited availability of large, structurally diverse macrocyclic libraries hampers the discovery of leads. Here, we describe the discovery of efficient macrocyclization reactions based on thiol-to-amine ligations using bis-electrophiles, their application to synthesize and screen large libraries of macrocyclic compounds, and the identification of potent small macrocyclic ligands. The thiol-to-amine cyclization reactions showed unexpectedly high yields for a wide substrate range, which obviated product purification and enabled the generation and screening of an 8988 macrocycle library with a comparatively small effort. X-ray structure analysis of an identified thrombin inhibitor (Ki = 42 ± 5 nM) revealed a snug fit with the target, validating the strategy of screening large libraries with a high skeletal diversity. The approach provides a route for screening large sub-kilodalton macrocyclic libraries and may be applied to many challenging drug targets.

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Type
research article
DOI
10.1126/sciadv.aaw2851
Author(s)
Kale, S. S.  
Bergeron-Brlek, M.  
Wu, Y.
Kumar, M. G.
Pham, M. V.
Bortoli, J.  
Vesin, J.  
Kong, X.-D.  
Machado, J. Franco  
Deyle, K.
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Date Issued

2019-08-21

Published in
Science Advances
Volume

5

Issue

8

Article Number

eaaw2851

Note

Distributed under a Creative Commons Attribution Non Commercial License 4.0 (CC BY-NC)

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPPT  
PTCB  
FunderGrant Number

FNS

157842

FNS-NCCR

NCCR Chemical Biology

Available on Infoscience
September 11, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/161083
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