Data extracted from this reference:
Application
synthesis
isopentenol production in Escherichia coli by utilizing phosphomevalonate decarboxylase and Escherchia coli-endogenous phosphatase AphA. The enzymes bypass the isopentenyl diphosphate mevalonate pathways, have reduced energetic requirements, are further decoupled from intrinsic regulation, and are free from isopentenyl diphosphate-related toxicity. Reduced aeration rate has less impact on the bypass pathway than the original mevalonate pathway. The performance of the bypass pathway is primarily determined by the activity of phosphomevalonate decarboxylase
Haloferax volcanii
Cloned(Commentary)
expression in Escherichia coli
Haloferax volcanii
Organism
Haloferax volcanii
D4GXZ3
Haloferax volcanii DSM 3757
D4GXZ3
Synonyms
Application (protein specific)
synthesis
isopentenol production in Escherichia coli by utilizing phosphomevalonate decarboxylase and Escherchia coli-endogenous phosphatase AphA. The enzymes bypass the isopentenyl diphosphate mevalonate pathways, have reduced energetic requirements, are further decoupled from intrinsic regulation, and are free from isopentenyl diphosphate-related toxicity. Reduced aeration rate has less impact on the bypass pathway than the original mevalonate pathway. The performance of the bypass pathway is primarily determined by the activity of phosphomevalonate decarboxylase
Haloferax volcanii
Cloned(Commentary) (protein specific)
expression in Escherichia coli
Haloferax volcanii
Other publictions for EC
748553
Kang
Isopentenyl diphosphate (IPP) ...
Haloferax volcanii, Haloferax volcanii DSM 3757
Metab. Eng.
34
25-35
2016
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727778
Vannice
Identification in Haloferax vo ...
Haloferax volcanii, Haloferax volcanii DSM 3757
J. Bacteriol.
196
1055-1063
2014
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