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  2. Macrocycle synthesis strategy based on step-wise "adding and reacting" three components enables screening of large combinatorial libraries

Macrocycle synthesis strategy based on step-wise "adding and reacting" three components enables screening of large combinatorial libraries

  • Chem Sci. 2020 Jun 26;11(30):7858-7863. doi: 10.1039/d0sc01944e.
Ganesh K Mothukuri 1 Sangram S Kale 1 Carl L Stenbratt 1 Alessandro Zorzi 1 Jonathan Vesin 2 Julien Bortoli Chapalay 2 Kaycie Deyle 1 Gerardo Turcatti 2 Laura Cendron 3 Alessandro Angelini 4 5 Christian Heinis 1
Affiliations

Affiliations

  • 1 Institute of Chemical Sciences and Engineering, School of Basic Sciences, Ecole Polytechnique Fédérale de Lausanne (EPFL) CH-1015 Lausanne Switzerland christian.heinis@epfl.ch.
  • 2 Biomolecular Screening Facility, School of Life Sciences, Ecole Polytechnique Fédérale de Lausanne (EPFL) CH-1015 Lausanne Switzerland.
  • 3 Department of Biology, University of Padova 35131 Padova Italy.
  • 4 Department of Molecular Sciences and Nanosystems, Ca' Foscari University of Venice Via Torino 155, Venezia Mestre Venice 30172 Italy.
  • 5 European Centre for Living Technology (ECLT), Ca' Bottacin Dorsoduro 3911, Calle Crosera Venice 30124 Italy.
Abstract

Macrocycles provide an attractive modality for drug development, but generating ligands for new targets is hampered by the limited availability of large macrocycle libraries. We have established a solution-phase macrocycle synthesis strategy in which three building blocks are coupled sequentially in efficient alkylation reactions that eliminate the need for product purification. We demonstrate the power of the approach by combinatorially reacting 15 bromoacetamide-activated tripeptides, 42 amines, and 6 bis-electrophile cyclization linkers to generate a 3780-compound library with minimal effort. Screening against Thrombin yielded a potent and selective inhibitor (K i = 4.2 ± 0.8 nM) that efficiently blocked blood coagulation in human plasma. Structure-activity relationship and X-ray crystallography analysis revealed that two of the three building blocks acted synergistically and underscored the importance of combinatorial screening in macrocycle development. The three-component library synthesis approach is general and offers a promising avenue to generate macrocycle ligands to Other targets.

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