MetaCyc Pathway: (S)-reticuline biosynthesis I in Klebsiella michiganensis M5al

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Reactions and Genes L-Phenylalanine (N)
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Monophenol monooxygenase:
2 L-tyrosine + dioxygen→2 L-dopa
(EC 1.14.18.1)
No genes
Aspartate transaminase:
L-tyrosine + 2-oxoglutarate→3-(4-hydroxyphenyl)pyruvate + L-glutamate
(EC 2.6.1.1; 2.6.1.27; 2.6.1.5; 2.6.1.57)
BWI76_RS01925 -2.5
BWI76_RS03690 -0.2
BWI76_RS06660 -0.2
BWI76_RS06750 +0.1
BWI76_RS07560 -0.1
BWI76_RS07570 +0.1
BWI76_RS08675 +0.2
BWI76_RS09870 -2.3
BWI76_RS10245 -0.2
BWI76_RS12985 +0.1
BWI76_RS13400 +0.2
BWI76_RS18930 -5.2
BWI76_RS20205 -0.9
BWI76_RS22035 +0.0
BWI76_RS24235 -0.2
Tyrosine decarboxylase:
L-tyrosine + H+→tyramine + CO2
(EC 4.1.1.25; 4.1.1.28)
No genes
4-hydroxyphenylpyruvate decarboxylase:
3-(4-hydroxyphenyl)pyruvate + H+→(4-hydroxyphenyl)acetaldehyde + CO2
(EC 4.1.1.80)
No genes
Tyrosine 3-monooxygenase:
tyramine + (6R)-L-erythro-5,6,7,8-tetrahydrobiopterin + dioxygen→dopamine + 4a-hydroxy-L-erythro-5,6,7,8-tetrahydrobiopterin
(EC 1.14.16.2)
No genes
Aromatic-L-amino-acid decarboxylase:
L-dopa + H+→dopamine + CO2
(EC 4.1.1.28)
No genes
(S)-norcoclaurine synthase:
dopamine + (4-hydroxyphenyl)acetaldehyde→(S)-norcoclaurine + H2O
(EC 4.2.1.78)
No genes
(RS)-norcoclaurine 6-O-methyltransferase:
(S)-norcoclaurine + S-adenosyl-L-methionine→(S)-coclaurine + S-adenosyl-L-homocysteine + H+
(EC 2.1.1.128)
No genes
(S)-coclaurine-N-methyltransferase:
(S)-coclaurine + S-adenosyl-L-methionine→(S)-N-methylcoclaurine + S-adenosyl-L-homocysteine + H+
(EC 2.1.1.140)
No genes
(S)-N-methylcoclaurine + dioxygen + a reduced [NADPH-hemoprotein reductase]→(S)-3'-hydroxy-N-methylcoclaurine + an oxidized [NADPH-hemoprotein reductase] + H2O (EC 1.14.14.102)
No genes
3'-hydroxy-N-methyl-(S)-coclaurine 4'-O-methyltransferase:
(S)-3'-hydroxy-N-methylcoclaurine + S-adenosyl-L-methionine→(S)-reticuline + S-adenosyl-L-homocysteine + H+
(EC 2.1.1.116)
No genes

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Candidate genes for each reaction are identified from best hits to MetaCyc; by matching EC numbers (which are assigned by TIGRFam, SEED, or best hits to KEGG); or by matching SEED roles to KEGG reactions to MetaCyc reactions. See the "Protein" tab of each gene for more information