Composition and Conformation of Hetero‐ versus Homo‐Fluorinated Triazolamers Influence their Activity on Islet Amyloid Polypeptide Aggregation

Author:

Laxio Arenas José1,Lesma Jacopo1,Ha‐Duong Tap1ORCID,Ranjan Sahoo Bikash2,Ramamoorthy Ayyalusamy2,Tonali Nicolo1,Soulier Jean‐Louis1,Halgand Frédéric3,Giraud François4,Crousse Benoît1ORCID,Kaffy Julia1,Ongeri Sandrine1ORCID

Affiliation:

1. Université Paris-Saclay, CNRS BioCIS, Bat. Henri Moissan 17 av. des Sciences 91400 Orsay, France

2. Biophysics Department of Chemistry Biomedical Engineering Michigan Neuroscience Institute Macromolecular Science and Engineering University of Michigan Ann Arbor MI 48109-1055 USA

3. Université Paris-Saclay, CNRS Institut de Chimie Physique 91405 Orsay France

4. Equipe Biologie et Chimie Structurales Dept Chimie et Biologie Structurales et Analytiques ICSN CNRS, Université Paris Saclay 1 avenue de la terrasse 91190 Gif sur Yvette France

Abstract

AbstractNovel fluorinated foldamers based on aminomethyl‐1,4‐triazolyl‐difluoroacetic acid (1,4‐Tz−CF2) units were synthesized and their conformational behaviour was studied by NMR and molecular dynamics. Their activity on the aggregation of the human islet amyloid polypeptide (hIAPP) amyloid protein was evaluated by fluorescence spectroscopy and mass spectrometry. The fluorine labelling of these foldamers allowed the analysis of their interaction with the target protein. We demonstrated that the preferred extended conformation of homotriazolamers of 1,4‐Tz−CF2 unit increases the aggregation of hIAPP, while the hairpin‐like conformation of more flexible heterotriazolamers containing two 1,4‐Tz−CF2 units mixed with natural amino acids from the hIAPP sequence reduces it, and more efficiently than the parent natural peptide. The longer heterotriazolamers having three 1,4‐Tz−CF2 units adopting more folded hairpin‐like and ladder‐like structures similar to short multi‐stranded β‐sheets have no effect. This work demonstrates that a good balance between the structuring and flexibility of these foldamers is necessary to allow efficient interaction with the target protein.

Publisher

Wiley

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