'Dopamine-first' mechanism enables the rational engineering of the norcoclaurine synthase aldehyde activity profile
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Building Bridges: Biocatalytic C–C-Bond Formation toward Multifunctional ProductsGenes encoding norcoclaurine synthase occur as tandem fusions in the Papaveraceae.Structural Evidence for the Dopamine-First Mechanism of Norcoclaurine Synthase.Enzyme catalysed Pictet-Spengler formation of chiral 1,1'-disubstituted- and spiro-tetrahydroisoquinolines.Enzymatic and Chemoenzymatic Three-Step Cascades for the Synthesis of Stereochemically Complementary Trisubstituted Tetrahydroisoquinolines.Green Routes for the Production of Enantiopure Benzylisoquinoline Alkaloids.Library of Norcoclaurine Synthases and Their Immobilization for Biocatalytic Transformations.One-pot chemoenzymatic synthesis of trolline and tetrahydroisoquinoline analogues.Tying the knot: occurrence and possible significance of gene fusions in plant metabolism and beyond.
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P2860
'Dopamine-first' mechanism enables the rational engineering of the norcoclaurine synthase aldehyde activity profile
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name
'Dopamine-first' mechanism ena ...... hase aldehyde activity profile
@en
'Dopamine-first' mechanism ena ...... ase aldehyde activity profile.
@nl
type
label
'Dopamine-first' mechanism ena ...... hase aldehyde activity profile
@en
'Dopamine-first' mechanism ena ...... ase aldehyde activity profile.
@nl
prefLabel
'Dopamine-first' mechanism ena ...... hase aldehyde activity profile
@en
'Dopamine-first' mechanism ena ...... ase aldehyde activity profile.
@nl
P2093
P2860
P50
P356
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'Dopamine-first' mechanism ena ...... hase aldehyde activity profile
@en
P2093
Eleanor D Lamming
John M Ward
Markus C Gershater
Thomas Pesnot
P2860
P304
P356
10.1111/FEBS.13208
P407
P577
2015-02-09T00:00:00Z