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Literature summary extracted from

  • Algharrawi, K.; Summers, R.; Subramanian, M.
    Production of theobromine by N-demethylation of caffeine using metabolically engineered E. coli (2017), Biocatal. Agricult. Biotechnol., 11, 153-160 .
No PubMed abstract available

Cloned(Commentary)

EC Number Cloned (Comment) Organism
1.14.13.128 gene ndmA, recombinant expression of ndmA and ndmD genes in Escherichia coli Pseudomonas putida

Protein Variants

EC Number Protein Variants Comment Organism
1.14.13.128 additional information production of theobromine and paraxanthine by engineered Escherichia coli expressing the enzyme NdmA and NdmN from Psseudomonas putida CBS5, method evaluation and optimization. Addition of metal ions is not required, additon of Co2+ and Zn2+ might inhibit the process Pseudomonas putida

KM Value [mM]

EC Number KM Value [mM] KM Value Maximum [mM] Substrate Comment Organism Structure
1.14.13.128 0.037
-
Caffeine pH and temperature not specified in the publication Pseudomonas putida

Metals/Ions

EC Number Metals/Ions Comment Organism Structure
1.14.13.128 Fe2+ NdmA enzyme is a Rieske (2Fe-2S) non-heme iron monooxygenase Pseudomonas putida

Natural Substrates/ Products (Substrates)

EC Number Natural Substrates Organism Comment (Nat. Sub.) Natural Products Comment (Nat. Pro.) Rev. Reac.
1.14.13.128 7-methylxanthine + O2 + NADH + H+ Pseudomonas putida
-
xanthine + NAD+ + H2O + formaldehyde
-
?
1.14.13.128 7-methylxanthine + O2 + NADH + H+ Pseudomonas putida CBB5
-
xanthine + NAD+ + H2O + formaldehyde
-
?
1.14.13.128 caffeine + O2 + NADH + H+ Pseudomonas putida
-
theobromine + NAD+ + H2O + formaldehyde
-
?
1.14.13.128 caffeine + O2 + NADH + H+ Pseudomonas putida CBB5
-
theobromine + NAD+ + H2O + formaldehyde
-
?
1.14.13.128 additional information Pseudomonas putida enzyme NdmA catalyzes NADH-dependent N1-demethylation of caffeine to theobromine and theophylline to 3-methylxanthine, and subsequently to 7-methylxanthine, and xanthine. Theobromine is the major product due to highly selective N1-demethylation caffeine by NdmA. But the minor production of paraxanthine from caffeine is due to slight promiscuity of the NdmA towards the N3-position on the caffeine molecule. Direct N-demethylation of caffeine at the N3 position does not occur appreciably with the three N-demethylases involved in caffeine degradation in CBB5 ?
-
?
1.14.13.128 additional information Pseudomonas putida CBB5 enzyme NdmA catalyzes NADH-dependent N1-demethylation of caffeine to theobromine and theophylline to 3-methylxanthine, and subsequently to 7-methylxanthine, and xanthine. Theobromine is the major product due to highly selective N1-demethylation caffeine by NdmA. But the minor production of paraxanthine from caffeine is due to slight promiscuity of the NdmA towards the N3-position on the caffeine molecule. Direct N-demethylation of caffeine at the N3 position does not occur appreciably with the three N-demethylases involved in caffeine degradation in CBB5 ?
-
?

Organism

EC Number Organism UniProt Comment Textmining
1.14.13.128 Pseudomonas putida H9N289
-
-
1.14.13.128 Pseudomonas putida CBB5 H9N289
-
-

Substrates and Products (Substrate)

EC Number Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
1.14.13.128 7-methylxanthine + O2 + NADH + H+
-
Pseudomonas putida xanthine + NAD+ + H2O + formaldehyde
-
?
1.14.13.128 7-methylxanthine + O2 + NADH + H+
-
Pseudomonas putida CBB5 xanthine + NAD+ + H2O + formaldehyde
-
?
1.14.13.128 caffeine + O2 + NADH + H+
-
Pseudomonas putida theobromine + NAD+ + H2O + formaldehyde
-
?
1.14.13.128 caffeine + O2 + NADH + H+
-
Pseudomonas putida CBB5 theobromine + NAD+ + H2O + formaldehyde
-
?
1.14.13.128 additional information enzyme NdmA catalyzes NADH-dependent N1-demethylation of caffeine to theobromine and theophylline to 3-methylxanthine, and subsequently to 7-methylxanthine, and xanthine. Theobromine is the major product due to highly selective N1-demethylation caffeine by NdmA. But the minor production of paraxanthine from caffeine is due to slight promiscuity of the NdmA towards the N3-position on the caffeine molecule. Direct N-demethylation of caffeine at the N3 position does not occur appreciably with the three N-demethylases involved in caffeine degradation in CBB5 Pseudomonas putida ?
-
?
1.14.13.128 additional information enzyme NdmA catalyzes NADH-dependent N1-demethylation of caffeine to theobromine and theophylline to 3-methylxanthine, and subsequently to 7-methylxanthine, and xanthine. Theobromine is the major product due to highly selective N1-demethylation caffeine by NdmA. But the minor production of paraxanthine from caffeine is due to slight promiscuity of the NdmA towards the N3-position on the caffeine molecule. Direct N-demethylation of caffeine at the N3 position does not occur appreciably with the three N-demethylases involved in caffeine degradation in CBB5 Pseudomonas putida CBB5 ?
-
?
1.14.13.128 theophylline + O2 + NADH + H+
-
Pseudomonas putida 3-methylxanthine + NAD+ + H2O + formaldehyde
-
?
1.14.13.128 theophylline + O2 + NADH + H+
-
Pseudomonas putida CBB5 3-methylxanthine + NAD+ + H2O + formaldehyde
-
?

Synonyms

EC Number Synonyms Comment Organism
1.14.13.128 ndmA
-
Pseudomonas putida

Temperature Optimum [°C]

EC Number Temperature Optimum [°C] Temperature Optimum Maximum [°C] Comment Organism
1.14.13.128 30
-
in vivo assay, recombinant enzyme Pseudomonas putida

Turnover Number [1/s]

EC Number Turnover Number Minimum [1/s] Turnover Number Maximum [1/s] Substrate Comment Organism Structure
1.14.13.128 3.17
-
Caffeine pH and temperature not specified in the publication Pseudomonas putida

Cofactor

EC Number Cofactor Comment Organism Structure
1.14.13.128 NADH NdmA enzyme is a Rieske (2Fe-2S) non-heme iron monooxygenase that requires a partner reductase, NdmD, to transfer electrons from NADH Pseudomonas putida
1.14.13.128 [2Fe-2S]-center NdmA enzyme is a Rieske (2Fe-2S) non-heme iron monooxygenase that requires a partner reductase, NdmD, to transfer electrons from NADH Pseudomonas putida

General Information

EC Number General Information Comment Organism
1.14.13.128 physiological function the enzyme NdmA catalyzes NADH-dependent N1-demethylation of caffeine to theobromine and theophylline to 3-methylxanthine, and subsequently to 7-methylxanthine, and xanthine. The oxidoreductase NdmD, UniProt ID H9N291, catalyzes the oxidation of NADH and transfers electrons to NdmA and NdmB, which catalyze the N-demethylation reaction Pseudomonas putida

kcat/KM [mM/s]

EC Number kcat/KM Value [1/mMs-1] kcat/KM Value Maximum [1/mMs-1] Substrate Comment Organism Structure
1.14.13.128 85.68
-
Caffeine pH and temperature not specified in the publication Pseudomonas putida