Streamlined Identification of Metallopeptides for Intracellular Catalysis Using Positionally Addressable Combinatorial Libraries

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Abstract

The discovery and development of artificial catalysts to carry out bioorthogonal reactions in living cells is a primary goal at the interface of Chemistry and Biology. Current approaches rely on time-consuming trial-and-error methods. As an alternative, we show that positionally addressable combinatorial libraries (SPOT libraries) provide a significant advantage for the efficient identification of novel catalytic metallopeptides. Using these libraries, we were able to rapidly identify catalytic β-hairpin palladopeptides capable of promoting efficient depropargylation reactions in challenging intracellular environments.

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González-González, C., Martínez-Castro, L., Learte-Aymamí, S., Pose-Insua, C., Couceiro, J. R., Martin-Malpartida, P., … Vázquez, M. E. (2025). Streamlined Identification of Metallopeptides for Intracellular Catalysis Using Positionally Addressable Combinatorial Libraries. ACS Catalysis, 15(10), 8624–8632. https://doi.org/10.1021/acscatal.5c00525

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