1.2.1.101: L-tyrosine reductase
This is an abbreviated version!
For detailed information about L-tyrosine reductase, go to the full flat file.
Reaction
Synonyms
InaA, InbA, L-tyrosine reductase LnaA, L-tyrosine reductase LnbA, L-tyrosine reductases LnaA, L-tyrosine reductases LnbA
ECTree
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Substrates Products
Substrates Products on EC 1.2.1.101 - L-tyrosine reductase
for references in articles please use BRENDA:EC1.2.1.101
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REACTION DIAGRAM
D-tyrosinal + NADP+ + AMP + diphosphate
Substrates: LnaA is somewhat D/L-unspecific and also activates D-Tyr
Products: -
Products: -
?
D-tyrosine + NADPH + H+ + ATP
D-tyrosinal + NADP+ + AMP + diphosphate
Substrates: LnaA is somewhat D/L-unspecific and also activates D-Tyr
Products: -
Products: -
?
L-tyrosinal + NADP+ + AMP + diphosphate
Substrates: -
Products: -
Products: -
?
L-tyrosine + NADPH + H+ + ATP
L-tyrosinal + NADP+ + AMP + diphosphate
Substrates: the lna and lnb biosynthetic pathways appear to be part of a signaling network that controls the formation of sclerotia, a resilient overwintering structure
Products: -
Products: -
?
L-tyrosine + NADPH + H+ + ATP
L-tyrosinal + NADP+ + AMP + diphosphate
Substrates: LnaA is somewhat D/L-unspecific and also activates D-Tyr
Products: -
Products: -
?
L-tyrosine + NADPH + H+ + ATP
L-tyrosinal + NADP+ + AMP + diphosphate
Substrates: LnbA specifically activates L-Tyr
Products: -
Products: -
?
L-tyrosine + NADPH + H+ + ATP
L-tyrosinal + NADP+ + AMP + diphosphate
Substrates: the lna and lnb biosynthetic pathways appear to be part of a signaling network that controls the formation of sclerotia, a resilient overwintering structure
Products: -
Products: -
?
L-tyrosine + NADPH + H+ + ATP
L-tyrosinal + NADP+ + AMP + diphosphate
Substrates: LnaA is somewhat D/L-unspecific and also activates D-Tyr
Products: -
Products: -
?
L-tyrosine + NADPH + H+ + ATP
L-tyrosinal + NADP+ + AMP + diphosphate
Substrates: -
Products: -
Products: -
?