1.1.3.17: choline oxidase
This is an abbreviated version!
For detailed information about choline oxidase, go to the full flat file.
Word Map on EC 1.1.3.17
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1.1.3.17
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acetylcholine
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electrode
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acetylcholinesterase
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biosensors
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betaine
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electrochemical
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ache
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amperometric
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arthrobacter
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globiformis
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glycinebetaine
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organophosphorus
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co-immobilized
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luminol
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post-column
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screen-printed
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prussian
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electropolymerized
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butyrylcholine
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4-aminoantipyrine
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bienzymatic
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four-electron
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analysis
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choline-containing
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polypyrrole
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alkoxide
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3.1.1.8
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nafion
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enzyme-modified
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electrodeposited
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co-crosslinking
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agriculture
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synthesis
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nutrition
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biotechnology
- 1.1.3.17
- acetylcholine
-
electrode
- acetylcholinesterase
-
biosensors
- betaine
-
electrochemical
-
ache
-
amperometric
- arthrobacter
- globiformis
- glycinebetaine
-
organophosphorus
-
co-immobilized
- luminol
-
post-column
-
screen-printed
-
prussian
-
electropolymerized
- butyrylcholine
- 4-aminoantipyrine
-
bienzymatic
-
four-electron
- analysis
-
choline-containing
-
polypyrrole
-
alkoxide
-
3.1.1.8
-
nafion
-
enzyme-modified
-
electrodeposited
-
co-crosslinking
- agriculture
- synthesis
- nutrition
- biotechnology
Reaction
Synonyms
alkaliphilic choline oxidase, ANI01nite_22550, An_CodA, APChO-syn, CHO, choline oxidase, choline-oxygen 1-oxidoreductase, choline:oxygen 1-reductase, ChOx, ChOx protein, codA, COX
ECTree
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Cloned
Cloned on EC 1.1.3.17 - choline oxidase
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Arabidopsis thaliana transformed with codA gene from Arthrobacter globiformis which encodes choline oxidase
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Balb/c mice used for toxicity studies of choline oxidase - no significant difference from control in terms of growth, body weight, food consumption, and blood biochemical indices. Analysis of various tissues show no significant effect
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choline oxidase from Arthrobacter pascens facilitates adaptation to osmotic stress in Escherichia coli
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cloning of Sinorhizobium meliloti bet genes, Tn5 mutant LtS23-1020 is completed by plasmid pCHO34
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codA gene introduced into Synecochoccus sp. PCC 7942 and Arabidopsis thaliana leads to accumulation of glycinebetaine and enhanced tolerance to salt and cold stress, rice Oryza sativa L. genetically engineered, Agrobacterium-mediated transformation, ability to synthesize glycinebetaine is established by introducing the codA gene for choline oxidase from Arthrobacter globiformis
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expressed in Escherichia coli Rosetta(DE3)pLysS cells
expressed in Escherichia coli, plant expression vector pGAH/codA,codA gene and nos terminator fragments excised from pGAH/codA, ligated to stress-inducible SWPA2 promoter, fused into pCAMBIA3300 binary vector, resulting pScodA transformed into Solanum tuberosum by using Agrobacterium tumefaciens strain AGL0
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expressed in Escherichia coli, strain Rosetta(DE3)pLysS, pET/codAmg plasmid, wild-type and Glu312 variants generated by site-directed mutagenesis
expressed in Escherichia coli, wild-type and H351A variant, plasmid pET/codAmg1-H351A
expression of wild-type and mutant enzymes in Escherichia coli strain Rosetta(DE3)pLysS
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expression of wild-type and mutants in Escherichia coli strain Rosetta(DE3)pLysS
gene codA, expression in Euccalyptus globulus via Agrobaccterium tumefaciens strain EHA105 transfection method using vectors pBI121 and pGW23codA
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gene codA, expression of Strep-tagged wild-type and mutant enzymes in Escherichia coli strain BL21-Gold
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heterologous expression in Escherichia coli DH5 alpha and BL21(DE3), respectively. Systematic exchange of individual segments of the Arthrobacter pascens gene with segments from a choline oxidase-encoding gene from Arthrobacter globiformis yielding a functional chimeric enzyme
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mutant enzyme S101A is expressed in Escherichia coli Rosetta(DE3)pLysS cells
overexpression of the enzyme, fused to a chloroplast-transit peptide from Pisum sativum, in transgenic Oryza sativa plants using the Agrobacterium tumefaciens transfection system
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recombinant expression in Escherichia coli strain Rosetta (DE3)pLysS
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recombinant expression in Escherichia coli strain Rosetta (DE3)pLysS