Selective transformations of complex molecules are enabled by aptameric protective groups

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Abstract

Emerging trends in drug discovery are prompting a renewed interest in natural products as a source of chemical diversity and lead structures. However, owing to the structural complexity of many natural compounds, the synthesis of derivatives is not easily realized. Here, we demonstrate a conceptually new approach using oligonucleotides as aptameric protective groups. These block several functionalities by non-covalent interactions in a complex molecule and enable the highly chemo- and regioselective derivatization (>99%) of natural antibiotics in a single synthetic step with excellent conversions of up to 83%. This technique reveals an important structure-activity relationship in neamine-based antibiotics and should help both to accelerate the discovery of new biologically active structures and to avoid potentially costly and cumbersome synthetic routes. © 2012 Macmillan Publishers Limited. All rights reserved.

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Bastian, A. A., Marcozzi, A., & Herrmann, A. (2012). Selective transformations of complex molecules are enabled by aptameric protective groups. Nature Chemistry, 4(10), 789–793. https://doi.org/10.1038/nchem.1402

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