Design and NMR characterization of reversible head-to-tail boronate-linked macrocyclic nucleic acids

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Abstract

Inspired by the ability of boronic acids to bind with compounds containing diol moieties, we envisioned the formation in solution of boronate ester-based macrocycles by the head-to-tail assembly of a nucleosidic precursor that contains both a boronic acid and the natural 2′,3′-diol of ribose. DOSY NMR spectroscopy experiments in water and anhydrous DMF revealed the dynamic assembly of this precursor into dimeric and trimeric macrocycles in a concentration-dependent fashion as well as the reversibility of the self-assembly process. NMR experimental values and quantum mechanics calculations provided further insight into the sugar pucker conformation profile of these macrocycles.

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Debiais, M., Gimenez Molina, A., Müller, S., Vasseur, J. J., Barvik, I., Baraguey, C., & Smietana, M. (2022). Design and NMR characterization of reversible head-to-tail boronate-linked macrocyclic nucleic acids. Organic and Biomolecular Chemistry, 20(14), 2889–2895. https://doi.org/10.1039/d2ob00232a

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