Masked cerulenin enables a dual-site selective protein crosslink

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Abstract

Protein-reactive natural products such as the fungal metabolite cerulenin are recognized for their value as therapeutic candidates, due to their ability to selectively react with catalytic residues within a protein active site or a complex of protein domains. Here, we explore the development of fatty-acid and polyketide-synthase probes by synthetically modulating cerulenin's functional moieties. Using a mechanism-based approach, we reveal unique reactivity within cerulenin and adapt it for fluorescent labeling and crosslinking of fatty-acid and iterative type-I polyketide synthases. We also describe two new classes of silylcyanohydrin and silylhemiaminal masked crosslinking probes that serve as new tools for activity and structure studies of these biosynthetic pathways.

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Jiang, Z., Chen, A., Chen, J., Sekhon, A., Louie, G. V., Noel, J. P., … Burkart, M. D. (2023). Masked cerulenin enables a dual-site selective protein crosslink. Chemical Science, 14(39), 10925–10933. https://doi.org/10.1039/d3sc02864j

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