bioRxiv · 10.1101/2024.01.24.577118
Elucidation of chalkophomycin biosynthesis reveals N-hydroxypyrrole-forming enzymes
Abstract
Reactive functional groups, such as N-nitrosamines, impart unique bioactivities to the natural products in which they are found. Recent work has illuminated enzymatic N-nitrosation reactions in microbial natural product biosynthesis, motivating an interest in discovering additional metabolites constructed using such reactivity. Here, we use a genome mining approach to identify over 400 cryptic biosynthetic gene clusters (BGCs) encoding homologs of the N-nitrosating biosynthetic enzyme SznF, including the BGC for chalkophomycin, a CuII-binding metabolite that contains a C-type diazeniumdiolate and N-hydroxypyrrole. Characterizing chalkophomycin biosynthetic enzymes reveals previously unknown enzymes responsible for N-hydroxypyrrole biosynthesis, including the first prolyl-N-hydroxylase, and a key step in assembly of the diazeniumdiolate-containing amino acid graminine. Discovery of this pathway enriches our understanding of the biosynthetic logic employed in constructing unusual heteroatom-heteroatom bondcontaining functional groups, enabling future efforts in natural product discovery and biocatalysis.
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Crooke, A. M., Chand, A. K., Balskus, E. P.. 2024-01-25. Elucidation of chalkophomycin biosynthesis reveals N-hydroxypyrrole-forming enzymes. https://doi.org/10.1101/2024.01.24.577118
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