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  2. A Multicomponent Stapling Approach to Exocyclic Functionalized Helical Peptides: Adding Lipids, Sugars, PEGs, Labels, and Handles to the Lactam Bridge

A Multicomponent Stapling Approach to Exocyclic Functionalized Helical Peptides: Adding Lipids, Sugars, PEGs, Labels, and Handles to the Lactam Bridge

  • Bioconjug Chem. 2019 Jan 16;30(1):253-259. doi: 10.1021/acs.bioconjchem.8b00906.
Aldrin V Vasco 1 Yanira Méndez 1 2 Andrea Porzel 1 Jochen Balbach 3 Ludger A Wessjohann 1 Daniel G Rivera 1 2
Affiliations

Affiliations

  • 1 Department of Bioorganic Chemistry , Leibniz Institute of Plant Biochemistry , Weinberg 3 , D-06120 , Halle (Saale) , Germany.
  • 2 Center for Natural Products Research, Faculty of Chemistry , University of Havana , Zapata y G , Havana 10400 , Cuba.
  • 3 Institute of Physics/Biophysics and Center for Structural and Dynamics of Proteins , Martin Luther University Halle-Wittenberg , D-06120 , Halle (Saale) , Germany.
Abstract

Peptide stapling is traditionally used to lock peptide conformations into α-helical structures using a variety of macrocyclization chemistries. In an endeavor to add a diversity-generating tool to this repertoire, we introduce a multicomponent stapling approach enabling the simultaneous stabilization of helical secondary structures and the exocyclic N-functionalization of the side chain-tethering lactam bridge. This is accomplished by means of a novel solid-phase methodology comprising, for the first time, the on-resin Ugi reaction-based macrocyclization of peptide side chains bearing amino and carboxylic acid groups. The exocyclic diversity elements arise from the isocyanide component used in the Ugi multicomponent stapling protocol, which allows for the incorporation of relevant fragments such as lipids, sugars, polyethylene glycol, fluorescent labels, and reactive handles. We prove the utility of such exocyclic reactive groups in the bioconjugation of a maleimide-armed lactam-bridged peptide to a carrier protein. The on-resin multicomponent stapling proved efficient for the installation of not only one, but also two consecutive lactam bridges having either identical or dissimilar N-functionalities. The easy access to helical Peptides with a diverse set of exocyclic functionalities shows prospect for applications in peptide drug discovery and chemical biology.

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