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Identification and characterization of N9-methyltransferase involved in converting caffeine into non-stimulatory theacrine in tea.

Nature communications2020Zhang YH, Li YF, Wang Y, et al.
Study designOther primary literature
SubjectUnknown

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Study design
Other primary literature
Subject
Unknown
Publication year
2020
Source
doi.org
Abstract display
Shown here
Publication status
Active
Status checked
17 Aug 2026
Collected
3 Aug 2026
Freshness
Current
Review stage
Automated
Record status
Published

Abstract

Caffeine is a major component of xanthine alkaloids and commonly consumed in many popular beverages. Due to its occasional side effects, reduction of caffeine in a natural way is of great importance and economic significance. Recent studies reveal that caffeine can be converted into non-stimulatory theacrine in the rare tea plant Camellia assamica var. kucha (Kucha), which involves oxidation at the C8 and methylation at the N9 positions of caffeine. However, the underlying molecular mechanism remains unclear. Here, we identify the theacrine synthase CkTcS from Kucha, which possesses novel N9-methyltransferase activity using 1,3,7-trimethyluric acid but not caffeine as a substrate, confirming that C8 oxidation takes place prior to N9-methylation. The crystal structure of the CkTcS complex reveals the key residues that are required for the N9-methylation, providing insights into how caffeine N-methyltransferases in tea plants have evolved to catalyze regioselective N-methylation through fine tuning of their active sites. These results may guide the future development of decaffeinated drinks.

MeSH

Binding SitesBiosynthetic PathwaysCaffeineCloning, MolecularCrystallography, X-RayEvolution, MolecularGene Expression Regulation, PlantMethylationMethyltransferasesPlant LeavesRecombinant ProteinsTeaTranscription, GeneticUric Acid

DOI 10.1038/s41467-020-15324-7

PMID 32193380

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