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A Modular Synthesis of Teraryl-Based α-Helix Mimetics, Part 3: Iodophenyltriflate Core Fragments Featuring Side Chains of Proteinogenic Amino Acids. | LitMetric

AI Article Synopsis

  • Teraryl-based α-helix mimetics are effective in inhibiting protein-protein interactions (PPI), and a new synthesis approach using a benzene core with two differently reactive leaving groups has been developed.
  • Previous research highlighted the use of 4-iodophenyltriflates with various proteinogenic amino acid side chains, and this study introduces core fragments for six additional amino acids.
  • The study ensures stability by using protected forms of certain nucleophilic side chains and explores cross-coupling processes for building teraryls.

Article Abstract

Teraryl-based α-helix mimetics have proven to be useful compounds for the inhibition of protein-protein interactions (PPI). We have developed a modular and flexible approach for the synthesis of teraryl-based α-helix mimetics using a benzene core unit featuring two leaving groups of differentiated reactivity in the Pd-catalyzed cross-coupling used for teraryl assembly. In previous publications we have introduced the methodology of 4-iodophenyltriflates decorated with the side chains of some of the proteinogenic amino acids. We herein report the core fragments corresponding to the previously missing amino acids Arg, Asn, Asp, Met, Trp and Tyr. Therefore, our set now encompasses all relevant amino acid analogues with the exception of His. In order to be compatible with the triflate moiety, some of the nucleophilic side chains had to be provided in a protected form to serve as stable building blocks. Additionally, cross-coupling procedures for the assembly of teraryls were investigated.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9306992PMC
http://dx.doi.org/10.1002/ejoc.202101278DOI Listing

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