Mechanistic Investigations into the Catalytic Mode of a Dehydratase Complex Involved in the Biosynthesis of Lantibiotic Cacaoidin

CHINESE JOURNAL OF CHEMISTRY(2023)

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摘要
Dehydration of serine/threonine residues necessitates the activity of a dehydratase enzyme (domain) during the biosynthesis of RiPP. Recently, it was reported that dehydration in the thioviridamide pathway relies on a distinct dehydratase complex that showcases the activities of a phosphotransferase TvaC for serine/threonine phosphorylation and a lyase TvaD for subsequent phosphate elimination. Herein, we report that dehydration reactions in the pathway of lantibiotic cacaoidin involves a similar dehydratase complex, CaoK/CaoY. Remarkably, this dehydratase complex exhibits flexible enzymatic activity and tolerates significant variations in its substrate peptide sequence. By binding with the leader peptide (LP) sequence of precursor peptide CaoA, the dehydration reactions proceed in a directional manner from the C-terminus of the core peptide (CP) to the N-terminus, and C-terminally truncated variants of CP are acceptable. We show that fusing CaoK to CaoY in a 1 : 1 molar ratio enables the resulting enzyme CaoYK to exert enhanced dehydration activity. CaoK binds with the LP to improve its own solubility and to ensure the phosphate transfer activity, while CaoY functions in a manner independently of LP. This work advances our understanding of the dehydration process during cacaoidin formation, and provides useful enzymes and methods for the studies of the rapidly emerging RiPPs. Herein, we report that the dehydration process of lantibiotic cacaoidin involves a dehydratase complex, which is composed of a phosphotransferase CaoK and a lyase CaoY in a 1 : 1 molar ratio. We show that fusing CaoK to CaoY enables the resulting enzyme CaoYK to exert enhanced solubility and dehydration activity.& DDAG;image
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关键词
Ribosomally synthesized and post-translationally modified peptide,Antibiotics,Enzyme models,Natural products,Dehydratase complex,Cacaoidin,Dehydration reaction
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