Solvent‐Free Mechanosynthesis of Oligopeptides by Coupling Peptide Segments of Different Lengths – Elucidating the Role of Cesium Carbonate in Ball Mill Processes

Author:

Wróblewska Aneta1ORCID,Bak‐Sypien Irena I.1ORCID,Paluch Piotr1ORCID,Wielgus Ewelina1ORCID,Zając Justyna1ORCID,Jeziorna Agata1ORCID,Kaźmierski Sławomir1ORCID,Potrzebowski Marek J.11ORCID

Affiliation:

1. Division of Structural Studies Centre of Molecular and Macromolecular Studies Polish Academy of Sciences Sienkiewicza 112 90-363 Łódź Poland

Abstract

AbstractWe report an idea for the synthesis of oligopeptides using a solvent‐free ball milling approach. Our concept is inspired by block play, in which it is possible to construct different objects using segments (blocks) of different sizes and lengths. We prove that by having a library of short peptides and employing the ball mill mechanosynthesis (BMMS) method, peptides can be easily coupled to form different oligopeptides with the desired functional and biological properties. Optimizing the BMMS process we found that the best yields we obtained when TBTU and cesium carbonate were used as reagents. The role of Cs2CO3 in the coupling mechanism was followed on each stage of synthesis by 1H, 13C and 133Cs NMR employing Magic Angle Spinning (MAS) techniques. It was found that cesium carbonate acts not only as a base but is also responsible for the activation of substrates and intermediates. The unique information about the BMMS mechanism is based on the analysis of 2D NMR data. The power of BMMS is proved by the example of different peptide combinations, 2+2, 3+2, 4+2, 5+2 and 4+4. The tetra‐, penta‐, hexa‐, hepta‐ and octapeptides obtained under this project were fully characterized by MS and NMR techniques.

Publisher

Wiley

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