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W. A. van der Donk

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Open access Aug 2026

A New Enzyme Family Catalyzing Methyllanthionine Sulfoxide Formation in Anti-phage Lanthipeptides

Lanthipeptides are one of the largest classes of ribosomally synthesized and post-translationally modified peptides (RiPPs). The coi biosynthetic gene cluster (BGC) from Streptomyces coelicolor A3(2) encodes a canonical class I lanthipeptide dehydratase (CoiB) and cyclase (CoiC), a bifunctional enzyme (CoiSA) with an O-methyltransferase (MT) and glutamyl lyase (GL) domain, and a protein of unknown function (CoiH). The product of the coi BGC was recently shown to impart anti-phage activity, but its structure is still unresolved. Previous work investigated the regioselectivity of the GL domains in CoiB and CoiSA and the stereochemistry of the cyclized precursor peptide, but the function of CoiH was not addressed. In this study, co-expression of the peptide CoiA1 with CoiBCSAH resulted in a +16 Da addition on the cyclized peptide compared to when CoiH was omitted. LC-MS/MS analysis indicated that this modification occurred in the first thioether ring. A combination of site-directed mutagenesis, comparison of linear and cyclized peptide substrates, hydrogen peroxide (H₂O₂) treatment, and collision-induced dissociation (CID) mass spectrometric analysis suggested that the sulfur atom in the first methyllanthionine was oxidized to a sulfoxide group by CoiH. This hypothesis was confirmed by NMR analysis. CoiH represents a previously uncharacterized oxygenase family catalyzing sulfoxide formation. Structure prediction tools suggest a novel enzyme fold without obvious metal or cofactor binding sites, raising the possibility that CoiH is a cofactor independent oxidation enzyme.

Jingqi Chen, Lingyang Zhu, W. A. van der Donk · 0 citations
Aug 2026

Unconventional Biocatalytic Strategies Orchestrate the Synthesis of the Nucleoside Analog Sinefungin.

In vitro and in vivo analyses support a recent finding that the defining carbon-carbon bond is formed not by a long-hypothesized PLP-dependent process, but by a vitamin B12-dependent radical SAM enzyme, and expand upon the current knowledge of radical-mediated C-C bond formation and PEARL enzyme catalysis.

Chi-Fang Lee, T. Zhou, Songyi Xue et al. · 0 citations
Open access Aug 2026

Mapping the sequence preference of the generalist class II lanthipeptide synthetase ProcM by mRNA display

This study uses the ultrahigh-throughput mRNA display technique to map the sequence compatibility of ProcM across a focused library and provides a high-throughput view of ProcM reactivity and highlights differences with previous high-throughput studies on substrate selectivity of RiPP modification enzymes.

Ouyang Yao, Hassan Nadeem, Y. Goto et al. · 0 citations

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