Selective labeling supports 5-thiooxazole post-translational modification in bufferins
Lippens, G.; Li, Y.; Jacob-Dubuisson, F.; Dubiley, S.
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Multinuclear nonheme iron-dependent oxidases (MNIOs) constitute one of the largest families of enzymes involved in natural product biosynthesis. Distinct MNIO subfamilies utilize molecular oxygen to catalyze a wide variety of complex peptide rearrangements, including {beta}-carbon excision and heterocyclization. Highly homologous MNIOs have been proposed to install either oxazolone-thioamides or 5-thiooxazoles as cysteine post-translational modifications in the closely related bufferin and EGKCG families of peptide chalkophores. These alternative structures prompted discussion of the subtle mechanistic features of MNIO enzymes that might determine reaction outcome. Here, we combine uniform 15N labeling with cysteine-specific carbonyl 13C labeling to unambiguously assign 5-thiooxazoles as the cysteine modifications in bufferins. Together with the recent identification of 5-thiooxazoles in three members of the sister EGKCG family and the re-assignment of the cysteine modification in oxazolin, these findings confirm that closely related MNIOs catalyze identical post-translational modifications.
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