Expanding biohybrid-mediated asymmetric catalysis into the realm of RNA

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Abstract

The recent development of biohybrid catalytic systems has allowed synthetic chemists to reach high levels of selectivity on a wide variety of valuable synthetic transformations. In this context, DNA-based catalysts have emerged as particularly appealing tools. Interestingly, while long RNA sequences (ribozymes) are known to catalyse specific biochemical reactions with remarkable efficiencies, RNA-based catalysts involving a catalytically active metal complex interacting in a non-covalent fashion with short sequences have never been evaluated to date. We report here our results, which have led to the first example involving a short RNA-based catalyst.

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Duchemin, N., Benedetti, E., Bethge, L., Vonhoff, S., Klussmann, S., Vasseur, J. J., … Arseniyadis, S. (2016). Expanding biohybrid-mediated asymmetric catalysis into the realm of RNA. Chemical Communications, 52(55), 8604–8607. https://doi.org/10.1039/c6cc03540j

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