Selective Macrocyclization of Unprotected Peptides with an Ex Situ Gaseous Linchpin Reagent

Author:

Ding Yuxuan1,Pedersen Simon S.12,Wang Haofan1,Xiang Baorui1,Wang Yixian1,Yang Zhi1,Gao Yuxiang3,Morosan Emilia13,Jones Matthew R.1,Xiao Han1,Ball Zachary T.1ORCID

Affiliation:

1. Department of Chemistry Rice University Houston, Texas 77005 United States

2. Carbon Dioxide Activation Center (CADIAC) Interdisciplinary Nanoscience Center Department of Chemistry Aarhus University Gustav Wieds Vej 14 8000 Aarhus C Denmark

3. Department of Physics and Astronomy Rice University Houston, Texas 77005 United States

Abstract

AbstractPeptide cyclization has dramatic effects on a variety of important properties, enhancing metabolic stability, limiting conformational flexibility, and altering cellular entry and intracellular localization. The hydrophilic, polyfunctional nature of peptides creates chemoselectivity challenges in macrocyclization, especially for natural sequences without biorthogonal handles. Herein, we describe a gaseous sulfonyl chloride derived reagent that achieves amine–amine, amine–phenol, and amine–aniline crosslinking through a minimalist linchpin strategy that affords macrocyclic urea or carbamate products. The cyclization reaction is metal‐mediated and involves a novel application of sulfine species that remains unexplored in aqueous or biological contexts. The aqueous method delivers unique cyclic or bicyclic topologies directly from a variety of natural bioactive peptides without the need for protecting‐group strategies.

Funder

Welch Foundation

National Science Foundation

Common Fund

Danmarks Grundforskningsfond

NordForsk

Publisher

Wiley

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