Literature DB >> 561017

The metabolism of caffeine by a Pseudomonas putida strain.

R Blecher, F Lingens.   

Abstract

1) A bacterium capable of growing aerobically with caffeine (1,3,7-trimethylxanthine) as sole source of carbon and nitrogen was isolated from soil. The morphological and physiological characteristics of the bacterium were examined. The organism was identified as a strain of Pseudomonas putida and is referred to as Pseudomonas putida C1. 15 additional caffeine-degrading bacteria were isolated, and all of them were also identified as Pseudomonas putida strains. The properties of the isolates are discussed in comparison with 6 Pseudomonas putida strains of the American Type Culture Collection. 2) The degradation of caffeine by Pseudomonas putida C1 was investigated; the following 14 metabolites were identified: 3,7-dimethylxanthine (theobromine), 1,7-dimethylxanthine, 7-methylxanthine, xanthine, 3,7-dimethyluric acid, 1,7-dimethyluric acid, 7-methyluric acid, uric acid, allantoin, allantoic acid, ureidoglycolic acid, glyoxylic acid, urea, and formaldehyde. Formaldehyde has been demonstrated to be the product of oxidative N-demethylation mediated by an inducible demethylase. A pathway of caffeine degradation is proposed.

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Year:  1977        PMID: 561017     DOI: 10.1515/bchm2.1977.358.2.807

Source DB:  PubMed          Journal:  Hoppe Seylers Z Physiol Chem        ISSN: 0018-4888


  8 in total

Review 1.  Towards generating caffeine-free tea by metabolic engineering.

Authors:  Sudesh Kumar Yadav; Paramvir Singh Ahuja
Journal:  Plant Foods Hum Nutr       Date:  2007-10-11       Impact factor: 3.921

2.  Effect of caffeine concentration on biomass production, caffeine degradation, and morphology of Aspergillus tamarii.

Authors:  G Gutiérrez-Sánchez; S Roussos; C Augur
Journal:  Folia Microbiol (Praha)       Date:  2012-09-28       Impact factor: 2.099

3.  Delineation of the caffeine C-8 oxidation pathway in Pseudomonas sp. strain CBB1 via characterization of a new trimethyluric acid monooxygenase and genes involved in trimethyluric acid metabolism.

Authors:  Sujit Kumar Mohanty; Chi-Li Yu; Shuvendu Das; Tai Man Louie; Lokesh Gakhar; Mani Subramanian
Journal:  J Bacteriol       Date:  2012-05-18       Impact factor: 3.490

4.  Salinivibrio costicola GL6, a Novel Isolated Strain for Biotransformation of Caffeine to Theobromine Under Hypersaline Conditions.

Authors:  Morahem Ashengroph
Journal:  Curr Microbiol       Date:  2016-10-19       Impact factor: 2.188

5.  Caffeine biosynthesis and degradation in tea [Camellia sinensis (L.) O. Kuntze] is under developmental and seasonal regulation.

Authors:  Prashant Mohanpuria; Vinay Kumar; Robin Joshi; Ashu Gulati; Paramvir Singh Ahuja; Sudesh Kumar Yadav
Journal:  Mol Biotechnol       Date:  2009-05-29       Impact factor: 2.695

6.  Degradation of caffeine and related methylxanthines bySerratia marcescens isolated from soil under coffee cultivation.

Authors:  P Mazzafera; O Olsson; G Sandberg
Journal:  Microb Ecol       Date:  1996-03       Impact factor: 4.552

Review 7.  Genetic characterization of caffeine degradation by bacteria and its potential applications.

Authors:  Ryan M Summers; Sujit K Mohanty; Sridhar Gopishetty; Mani Subramanian
Journal:  Microb Biotechnol       Date:  2015-02-12       Impact factor: 5.813

8.  Aerobic degradation of N-methyl-4-nitroaniline (MNA) by Pseudomonas sp. strain FK357 isolated from soil.

Authors:  Fazlurrahman Khan; Bhawna Vyas; Deepika Pal; Swaranjit Singh Cameotra
Journal:  PLoS One       Date:  2013-10-08       Impact factor: 3.240

  8 in total

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