Further investigation of the biosynthesis of caffeine in tea plants (Camellia sinensis L.). Methylation of transfer ribonucleic acid by tea leaf extracts

Author:

Suzuki T1,Takahashi E1

Affiliation:

1. Department of Agricultural Chemistry, Kyoto University, Kyoto 606, Japan

Abstract

1. The tRNA methyltransferase activity in vitro of leaves, cotyledons and roots of 85-day-old tea seedlings was studied. 2. The activity of extracts prepared from tea leaves with Polycar AT (insoluble polyvinylpyrrolidine) had optimum pH7.7 and was greatly influenced by thiol compounds, but only slightly by metal ions and ammonium acetate. 3. The activities of extracts, expressed per mg of protein, were as follows: roots greater than leaves greater than cotyledons. The only methylated base isolated after incubation with these preparations was 1-methyladenine. 4. The results did not support the view of involvement of methylation of nucleic acids in caffeine biosynthesis in tea plants. In contrast, it is suggested that theophylline is synthesized from the specific methylated precursor in nucleic acids, namely 1-methyladenylic acid, via 1-methylxanthine.

Publisher

Portland Press Ltd.

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1. Biosynthesis of Purine Alkaloids;Plant Nucleotide Metabolism ‐ Biosynthesis, Degradation, and Alkaloid Formation;2020-01-03

2. Xanthine Alkaloids: Occurrence, Biosynthesis, and Function in Plants;Progress in the Chemistry of Organic Natural Products 105;2017

3. Expression and location of caffeine synthase in tea plants;Russian Journal of Plant Physiology;2007-09

4. Biosynthesis and Metabolism of Caffeine and Related Purine Alkaloids in Plants;Advances in Botanical Research;1999

5. Biosynthesis of Caffeine in Leaves of Coffee;Plant Physiology;1996-07-01

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