1.1.99.18: cellobiose dehydrogenase (acceptor)
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For detailed information about cellobiose dehydrogenase (acceptor), go to the full flat file.
Word Map on EC 1.1.99.18
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1.1.99.18
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cellulose
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phanerochaete
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chrysosporium
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biofuels
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basidiomycete
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flavocytochrome
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lignocellulose
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white-rot
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laccase
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pyranose
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corynascus
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lpmos
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myriococcum
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wood-degrading
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trametes
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cellodextrins
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thermophilum
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ligninolytic
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cello-oligosaccharides
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cellulose-binding
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glucose-methanol-choline
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cellulose-degrading
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flavodehydrogenase
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analysis
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sporotrichum
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rolfsii
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insolens
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myrothecium
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cellulose-grown
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biofuel production
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biotechnology
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industry
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dichlorophenol-indophenol
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brown-rot
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pycnoporus
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cellulose-based
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humicola
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wood-rotting
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bioanode
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verrucaria
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cellobiohydrolases
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diagnostics
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medicine
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synthesis
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degradation
- 1.1.99.18
- cellulose
- phanerochaete
- chrysosporium
-
biofuels
-
basidiomycete
-
flavocytochrome
- lignocellulose
-
white-rot
- laccase
- pyranose
- corynascus
-
lpmos
-
myriococcum
-
wood-degrading
- trametes
- cellodextrins
- thermophilum
-
ligninolytic
- cello-oligosaccharides
-
cellulose-binding
-
glucose-methanol-choline
-
cellulose-degrading
-
flavodehydrogenase
- analysis
- sporotrichum
- rolfsii
- insolens
-
myrothecium
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cellulose-grown
- biofuel production
- biotechnology
- industry
- dichlorophenol-indophenol
-
brown-rot
- pycnoporus
-
cellulose-based
- humicola
-
wood-rotting
-
bioanode
- verrucaria
- cellobiohydrolases
- diagnostics
- medicine
- synthesis
- degradation
Reaction
Synonyms
cbdA, CBO, CBOR, Cdh, CDH IIA, CDH IIB, cdh-1, CDH1, Cdh2, CDHIIA, cellobiose (acceptor) 1-oxidoreductase, cellobiose dehydrogenase, cellobiose dehydrogenase IIA, cellobiose oxidase, cellobiose oxidoreductase, cellobiose [acceptor] 1-oxidoreductase, Cellobiose-quinone oxidoreductase, cellobiose:(acceptor) 1-oxidoreductase, cellobiose:quinone oxidoreductase, cellobiose:[acceptor] 1-oxidoreductase, DCHsr, dehydrogenase, cellobiose, EC 1.1.3.25, EC 1.1.5.1, MtCDH, oxidase, cellobiose, Thite_59724, TpCDH, TvCDH
ECTree
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Cloned
Cloned on EC 1.1.99.18 - cellobiose dehydrogenase (acceptor)
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expressed in Aspergillus niger
expressed in Escherichia coli Pichia pastoris, Aspergillus niger, and Trichoderma reesei
Thermothelomyces fergusii
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expressed in Pichia pastoris strain GS115 and Trichoderma reesei strain QM9414
expression in Aspergillus oryzae
expression in Pichia pastoris under the control of the AOX1 methanol promoter, without affecting its kinetic characteristics
expression in Pichia pastoris, enzyme retains catalytic and cellulose-binding properties of the wild-type enzyme
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expression in Trichoderma reesei. Heterologous production of the enzyme (PcCDH) is faster and the yield higher than secretion by Phanerochaete chrysosporium. It does not need a cellulose-based medium that impedes efficient production and purification of the enzyme (PcCDH) by binding to the polysaccharide. The obtained high uniformity of Phanerochaete chrysosporium CDHTr glycoforms is very useful to investigate electron transfer characteristics in biosensors and biofuel cells, which are depending on the spatial restrictions inflicted by high-mannose N-glycan trees. The determined catalytic and electrochemical properties of PcCDHTr are very similar to those of PcCDH and the FAD cofactor occupancy is good, which advocates Trichoderma reesei as expression host for engineered PcCDH for biosensors and biofuel cells
wild type and mutant cellobiose dehydrogenase genes are cloned for heterologously expression in yeast Pichia pastoris