4.2.3.110: (+)-sabinene synthase
This is an abbreviated version!
For detailed information about (+)-sabinene synthase, go to the full flat file.
Word Map on EC 4.2.3.110
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4.2.3.110
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monoterpene
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synthases
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officinalis
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salvia
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+-bornyl
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terpene
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sage
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camphor
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lamiaceae
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spasmolytic
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astringent
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plastidial
- 4.2.3.110
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monoterpene
- synthases
- officinalis
-
salvia
-
+-bornyl
-
terpene
- sage
- camphor
-
lamiaceae
-
spasmolytic
-
astringent
-
plastidial
Reaction
Synonyms
alpha-thujene synthase/sabinene synthase, CjSabS2, CuSabS2, HcSabS, MkSabS, MKTPS1, PsSabS1, PsSabS2, SaBS, SoSabS2, SpSabS2, SSS, TPS-sab, TPS3, TpSabS
ECTree
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Engineering
Engineering on EC 4.2.3.110 - (+)-sabinene synthase
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additional information
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strategies in engineering sabinene production, overview
additional information
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strategies in engineering sabinene production, overview
additional information
strategies in engineering sabinene production, overview
additional information
strategies in engineering sabinene production, overview
additional information
exchange of sequences corresponding by homology to the C-terminal domain including the domain spanning alpha-helix, between sabinene synthase and both bornyl diphosphate synthase and cineole synthase. Exchange of tresidues 304377 from cineole synthase into sabinene synthase is sufficient to impart the alternative termination chemistry involving water capture to alpha-terpineol and cyclization to 1,8-cineole
additional information
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exchange of sequences corresponding by homology to the C-terminal domain including the domain spanning alpha-helix, between sabinene synthase and both bornyl diphosphate synthase and cineole synthase. Exchange of tresidues 304377 from cineole synthase into sabinene synthase is sufficient to impart the alternative termination chemistry involving water capture to alpha-terpineol and cyclization to 1,8-cineole
additional information
strategies in engineering sabinene production, overview
additional information
strategies in engineering sabinene production, overview. Biosynthetic pathway using both the non-mevalonate MEP and mevalonate MVA pathways combining the geranyl diphosphate synthase genes and sabinene synthase from Salvia pomifera, and engineering native Erg20p into a GPP synthase and heterologous expression of sabinene synthase from Salvia pomifera
additional information
strategies in engineering sabinene production, overview