1.11.1.6: catalase
This is an abbreviated version!
For detailed information about catalase, go to the full flat file.
Word Map on EC 1.11.1.6
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1.11.1.6
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dismutase
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sod
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malondialdehyde
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gsh
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ascorbate
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necrosis
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thiobarbituric
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erythrocyte
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wistar
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endothelial
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xanthine
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glutathione-s-transferase
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artery
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cholesterol
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s-transferase
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caspase-3
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albino
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chlorophyll
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copper
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heme
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creatinine
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myeloperoxidase
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tnf
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anti-oxidant
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peroxisomal
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gsh-px
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tbars
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biotechnology
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streptozotocin
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agriculture
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ache
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analysis
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comet
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hydroperoxide
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hepatoprotective
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nephrotoxicity
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neuroprotective
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sacrificed
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mannitol
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defenses
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h2o2-induced
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urease
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cadmium
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alt
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industry
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hepatotoxicity
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degradation
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ischemia
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diagnostics
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gill
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pro-oxidant
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synthesis
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alpha-tocopherol
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acetylcholinesterase
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aquatic
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medicine
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reperfusion
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polyphenols
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energy production
- 1.11.1.6
- dismutase
- sod
- malondialdehyde
- gsh
- ascorbate
- necrosis
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thiobarbituric
- erythrocyte
- wistar
- endothelial
- xanthine
- glutathione-s-transferase
- artery
- cholesterol
- s-transferase
- caspase-3
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albino
- chlorophyll
- copper
- heme
- creatinine
- myeloperoxidase
- tnf
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anti-oxidant
- peroxisomal
- gsh-px
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tbars
- biotechnology
- streptozotocin
- agriculture
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ache
- analysis
- comet
- hydroperoxide
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hepatoprotective
-
nephrotoxicity
-
neuroprotective
-
sacrificed
- mannitol
-
defenses
-
h2o2-induced
- urease
- cadmium
-
alt
- industry
-
hepatotoxicity
- degradation
- ischemia
- diagnostics
- gill
-
pro-oxidant
- synthesis
- alpha-tocopherol
- acetylcholinesterase
-
aquatic
- medicine
-
reperfusion
- polyphenols
- energy production
Reaction
Synonyms
Ab-catalase, BNC, caperase, CAT, CAT-1, CAT-A, CAT-P, Cat1.4, CatA, catalase, catalase A, catalase C, catalase form III, catalase P, catalase-1, catalase-A, catalase-peroxidase, catalase-phenol oxidase, CatB, CATC, CatF, CatG, CatP, CATPO, CcmC, CP, equilase, H2O2:H2O2 oxidoreductase, haem catalase, HPI-A, HPI-B, HPII, HTHP, hydrogen peroxide oxidoreductase, KAT, Kat E catalase, KatA, KatB, KatC, KatP, KpA, manganese catalase, More, optidase, PktA, polyethylene glycol-catalase, tyrosine-coordinated heme protein, VktA
ECTree
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Natural Substrates Products
Natural Substrates Products on EC 1.11.1.6 - catalase
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REACTION DIAGRAM
H2O2
O2 + H2O
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two monofunctional, one bifunctional catalase-peroxidase
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H2O2
O2 + H2O
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two monofunctional, one bifunctional catalase-peroxidase
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H2O2
O2 + H2O
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detoxification enzyme, enzyme protects the cell against high concentrations of peroxide
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H2O2
O2 + H2O
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enzyme is responsible for prevention of dehydration-related oxidative damage during seed desiccation, H2O2 may play a role for enzyme expression regulation and in the transduction pathway
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H2O2
O2 + H2O
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enzyme is responsible for the protection of the Helicobacter pylori cells against phagocyte attack in the gastric mucosa by disumtation of H2O2
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H2O2
O2 + H2O
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detoxification and protection enzyme
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H2O2
O2 + H2O
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regulator of H2O2-levels or protective function for hemoglobin or other SH-proteins
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H2O2
O2 + H2O
two monofunctional catalases, Cat-1 and Cat-3, one catalase-peroxidase enzyme, Cat-2
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H2O2
O2 + H2O
fungal enzyme interacts with the host, enzyme plays a role in the defense of the organism against oxygen-dependent killing mechanisms
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H2O2
O2 + H2O
fungal enzyme interacts with the host, enzyme plays a role in the defense of the organism against oxygen-dependent killing mechanisms
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H2O2
O2 + H2O
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detoxification enzyme, enzyme is naturally adapted to the cold climate of the arctic tundra
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H2O2
O2 + H2O
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detoxification enzyme, enzyme is naturally adapted to the cold climate of the arctic tundra
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H2O2
O2 + H2O
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one catalase-peroxidase, one catalase enzyme
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H2O2
O2 + H2O
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KatA catalase important for resistance of planctonic and biofilm cells to H2O2
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H2O2
O2 + H2O
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essential for optimal resistance to H2O2. KatB was not produced during the normal growth cycle. Catalase activity is greater in nonmucoid than in mucoid, alginate-producing organisms. When exposed to hydrogen peroxide and, to a greater extent, paraquat, total catalase activity was elevated 7fold to 16fold, respectively
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H2O2
O2 + H2O
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H2O2 decomposition is accompanied by enzyme inactivation which can be minimized in vitro by immobilization of the enzyme
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H2O2
O2 + H2O
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H2O2 decomposition is accompanied by enzyme inactivation which can be minimized in vitro by immobilization of the enzyme
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adenine deaminase, EC 3.5.4.2, from the amidohydrolase superfamily of enzymes catalyzes the conversion of adenine to hypoxanthine and ammonia. But it also catalyzes the catalase reaction converting H2O2 to H2O and O2. [MnII/MnII]-ADEec is active as a deaminase but not as a catalase. In contrast, [FeII/FeII]-ADEec catalyzes both reactions
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additional information
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regulation of enzyme expression and activity by drying occurs on transcriptional level, increase in enzyme activity during drying is associated with an decrease of H2O2 level and lipid peroxidation
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additional information
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the enzyme has negligible inhibitory effects on endothelium-dependent relaxations in mouse isolated aorta and small mesenteric artery which are not caused by H2O2, endothelium-independent relaxations are caused by H2O2 and are abolished by the enzyme, overview
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additional information
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the bifunctional catalase with phenol oxidase activity catalyses the decomposition of hydrogen peroxide into oxygen and water and also oxidizes various phenolic compounds
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additional information
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Mycothermus thermophilus ATCC 16454
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the bifunctional catalase with phenol oxidase activity catalyses the decomposition of hydrogen peroxide into oxygen and water and also oxidizes various phenolic compounds
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additional information
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bifunctional aa3 cytochrome c oxidase, CcO, possesses a peroxidase and a catalase activity
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additional information
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bifunctional aa3 cytochrome c oxidase, CcO, possesses a peroxidase and a catalase activity
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additional information
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bifunctional aa3 cytochrome c oxidase, CcO, possesses a peroxidase and a catalase activity
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additional information
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peroxidase and catalase activities are involved in direct adventitious shoot formation induced by thidiazuron in zygotic embryos
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additional information
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CcmC is a key determinant for cytochrome c biogenesis, pyoverdine maturation, and expression of some quorum sensing-regulated traits
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additional information
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the enzyme is involved in protection against peroxides and oxidative DNA damage, it is downregulated in biofilm cultures of Pseudomonas aeruginosa, that display up to a 105fold increase in mutability compared with planktonic cultures
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