Molecular Stiffening by Macrocycle Clustering

H Hang Yin Q Qian Cheng (The Hong Kong University of Science and Technology , , , ,) R Roselyne Rosas (Aix Marseille Univ CNRS, Centrale Marseille FSCM, Spectropole Marseille France) S Stéphane Viel (Aix Marseille Univ CNRS ICR AMUtech Marseille France) V Valerie Monnier (Aix Marseille Univ CNRS, Centrale Marseille FSCM, Spectropole Marseille France) L Laurence Charles D Didier Siri (Aix Marseille Univ CNRS ICR AMUtech Marseille France) D Didier Gigmes M Mehdi Yemloul (Aix Marseille Univ CNRS ISM2 AMUtech Marseille France) R Ruibing Wang (State Key Laboratory of Mechanism and Quality of Chinese Medicine, Institute of Chinese Medical Sciences) A Anthony Kermagoret (Aix Marseille Univ CNRS CINaM AMUtech Marseille France) D David Bardelang (CNRS, ICR, AMUtech, Aix-Marseille University, Marseille F-13397, France)

Abstract

Abstract Allosteric stiffening of a portion of a protein surface is a strategy used in nature to regulate protein oligomerization and provide crucial functions for cells. However, a similar strategy to selectively control part of a compound dynamics remains elusive. Here we show that cucurbit[ n ]uril (CB[ n ]) macrocycles can bind almost all portions of a tetratopic guest molecule, stiffening the different parts of the guest to different extents. “Host–guest” interactions were found to be instrumental in selectively “freezing” guest molecular motions. The combination of 1 H‐NMR (1D, 2D), DOSY, VT‐NMR, isothermal titration calorimetry (ITC), mass spectrometry and molecular modelling enabled to highlight the crucial role of cucurbit[8]uril (CB[8]) binding in the selective hardening of relevant portions of the guest molecule. Beyond implications for bioinspired systems mimicking control of a system dynamic to create a new function, this approach has relevance for improving room temperature phosphorescence, and could also be used to allosterically control organocatalysis in water.

Article Details

Volume / Issue Vol. 64, Issue 22
Published May 26, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (12)

H

Hang Yin

Q

Qian Cheng

The Hong Kong University of Science and Technology , , , ,

R

Roselyne Rosas

Aix Marseille Univ CNRS, Centrale Marseille FSCM, Spectropole Marseille France

S

Stéphane Viel

Aix Marseille Univ CNRS ICR AMUtech Marseille France

V

Valerie Monnier

Aix Marseille Univ CNRS, Centrale Marseille FSCM, Spectropole Marseille France

L

Laurence Charles

D

Didier Siri

Aix Marseille Univ CNRS ICR AMUtech Marseille France

D

Didier Gigmes

M

Mehdi Yemloul

Aix Marseille Univ CNRS ISM2 AMUtech Marseille France

R

Ruibing Wang

State Key Laboratory of Mechanism and Quality of Chinese Medicine, Institute of Chinese Medical Sciences

A

Anthony Kermagoret

Aix Marseille Univ CNRS CINaM AMUtech Marseille France

D

David Bardelang

CNRS, ICR, AMUtech, Aix-Marseille University, Marseille F-13397, France