Rhodaelectro-catalyzed access to chromones via formyl C–H activation towards peptide electro-labeling

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Abstract

Chromones represent a privileged scaffold in medicinal chemistry and are an omnipresent structural motif in natural products. Chemically encoded non-natural peptidomimetics feature improved stability towards enzymatic degradation, cell permeability and binding affinity, translating into a considerable impact on pharmaceutical industry. Herein, a strategy for the sustainable assembly of chromones via electro-formyl C–H activation is presented. The rational design of the rhodaelectro-catalysis is guided by detailed mechanistic insights and provides versatile access to tyrosine-based fluorogenic peptidomimetics.

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Stangier, M., Messinis, A. M., Oliveira, J. C. A., Yu, H., & Ackermann, L. (2021). Rhodaelectro-catalyzed access to chromones via formyl C–H activation towards peptide electro-labeling. Nature Communications, 12(1). https://doi.org/10.1038/s41467-021-25005-8

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