Dynamic force spectroscopy of synthetic oligorotaxane foldamers

Author:

Sluysmans DamienORCID,Devaux Floriane,Bruns Carson J.,Stoddart J. Fraser,Duwez Anne-SophieORCID

Abstract

Wholly synthetic molecules involving both mechanical bonds and a folded secondary structure are one of the most promising architectures for the design of functional molecular machines with unprecedented properties. Here, we report dynamic single-molecule force spectroscopy experiments that explore the energetic details of donor–acceptor oligorotaxane foldamers, a class of molecular switches. The mechanical breaking of the donor–acceptor interactions responsible for the folded structure shows a high constant rupture force over a broad range of loading rates, covering three orders of magnitude. In comparison with dynamic force spectroscopy performed during the past 20 y on various (bio)molecules, the near-equilibrium regime of oligorotaxanes persists at much higher loading rates, at which biomolecules have reached their kinetic regime, illustrating the very fast dynamics and remarkable rebinding capabilities of the intramolecular donor–acceptor interactions. We focused on one single interaction at a time and probed the stochastic rupture and rebinding paths. Using the Crooks fluctuation theorem, we measured the mechanical work produced during the breaking and rebinding to determine a free-energy difference, ΔG, of 6 kcal·mol−1 between the two local conformations around a single bond.

Funder

FNRS | Fonds pour la Formation à la Recherche dans l'Industrie et dans l'Agriculture

Fonds De La Recherche Scientifique - FNRS

King Abdulaziz City for Science and Technology

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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