Modifying the Catalytic Activity of Lipopeptide Assemblies with Nucleobases

Author:

Vela‐Gallego Sonia1ORCID,Lewandowski Bartosz2ORCID,Möhler Jasper2ORCID,Puente Alonso1ORCID,Gil‐Cantero David3,Wennemers Helma2ORCID,de la Escosura Andrés14ORCID

Affiliation:

1. Department of Organic Chemistry Universidad Autónoma de Madrid Campus Cantoblanco 28049 Madrid Spain

2. Laboratory of Organic Chemistry, D-CHAB ETH Zürich Vladimir-Prelog-Weg 3 8093 Zürich Switzerland

3. Department of Structure of Macromolecules Centro Nacional de Biotecnología / CSIC Campus de Cantoblanco 28049 Madrid Spain

4. Institute for Advanced Research in Chemistry (IAdChem) Campus de Cantoblanco 28049 Madrid Spain

Abstract

AbstractBiohybrid catalysts that operate in aqueous media are intriguing for systems chemistry. In this paper, we investigate whether control over the self‐assembly of biohybrid catalysts can tune their properties. As a model, we use the catalytic activity of functional hybrid molecules consisting of a catalytic H‐dPro‐Pro‐Glu tripeptide, derivatized with fatty acid and nucleobase moieties. This combination of simple biological components merged the catalytic properties of the peptide with the self‐assembly of the lipid, and the structural ordering of the nucleobases. The biomolecule hybrids self‐assemble in aqueous media into fibrillar assemblies and catalyze the reaction between butanal and nitrostyrene. The interactions between the nucleobases enhanced the order of the supramolecular structures and affected their catalytic activity and stereoselectivity. The results point to the significant control and ordering that nucleobases can provide in the self‐assembly of biologically inspired supramolecular catalysts.

Funder

Agencia Estatal de Investigación

European Innovation Council and Small and Medium-sized Enterprises Executive Agency

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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