3.2.1.75: glucan endo-1,6-beta-glucosidase
This is an abbreviated version!
For detailed information about glucan endo-1,6-beta-glucosidase, go to the full flat file.
Word Map on EC 3.2.1.75
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3.2.1.75
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trichoderma
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harzianum
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mycoparasitic
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beta-1,3-glucanase
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biocontrol
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gentiobiose
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laminarin
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beta-glucanases
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virens
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neotyphodium
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chitinases
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wall-degrading
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biotechnology
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rhizoctonia
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analysis
- 3.2.1.75
- trichoderma
- harzianum
-
mycoparasitic
- beta-1,3-glucanase
-
biocontrol
- gentiobiose
- laminarin
- beta-glucanases
- virens
- neotyphodium
- chitinases
-
wall-degrading
- biotechnology
-
rhizoctonia
- analysis
Reaction
Synonyms
acidic beta-1,6-glucanase, beta-(1->6)-glucanase, beta-1, 6-endoglucanase, beta-1,6-endoglucanase, beta-1,6-glucan 6-glucanohydrolase, beta-1,6-glucan hydrolase, beta-1,6-glucanase, beta-1,6-glucanase-pustulanase, beta-1-6-glucan hydrolase, BGN16.3, BT3312, endo-(1-6)-beta-D-glucanase, endo-1,6-beta-D-glucanase gene, endo-1,6-beta-glucanase, endo-beta-(1,6) glucanase, endo-beta-1,6-glucanase, gly30B, neg-1, Neg1, PUL1,6-beta-glucan, Pus30A
ECTree
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Engineering
Engineering on EC 3.2.1.75 - glucan endo-1,6-beta-glucosidase
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C393S
the mutant shows 0.005% activity compared to the wild type enzyme
C396S
the mutant shows 0.03% activity compared to the wild type enzyme
D286A
the mutant shows 0.27% activity compared to the wild type enzyme
H281A
the mutant shows 0.006% activity compared to the wild type enzyme
N282A
the mutant shows 0.009% activity compared to the wild type enzyme
W345A
the mutant shows 0.004% activity compared to the wild type enzyme
C393S
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the mutant shows 0.005% activity compared to the wild type enzyme
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D286A
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the mutant shows 0.27% activity compared to the wild type enzyme
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H281A
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the mutant shows 0.006% activity compared to the wild type enzyme
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N282A
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the mutant shows 0.009% activity compared to the wild type enzyme
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food industry
the enzyme can be used to hydrolyze beta-1,6-glucans of brown algae or fungal cell walls for producing gentiobiose as a high-value sugar and glucose as a fermentable sugar
additional information
gene disruption mutant, shows reduced virulence against Agaricus bisporus and diminished ability to use chitin as a carbon source
additional information
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gene disruption mutant, shows reduced virulence against Agaricus bisporus and diminished ability to use chitin as a carbon source
additional information
the 1,6-beta-D-glucanase gene (Neg1) is disrupted by repeat-induced point mutations. 9 nucleotides within the coding region of the gene change from GC to AT. No apparent phenotypic changes are observed in the mutant, but Congo-red, SDS, and cetyltrimethyl ammonium bromide, which affect fungal cell walls or membranes, markedly inhibit the hyphal growth of the mutant at a concentration that does not inhibi growth of the wild-type
additional information
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the 1,6-beta-D-glucanase gene (Neg1) is disrupted by repeat-induced point mutations. 9 nucleotides within the coding region of the gene change from GC to AT. No apparent phenotypic changes are observed in the mutant, but Congo-red, SDS, and cetyltrimethyl ammonium bromide, which affect fungal cell walls or membranes, markedly inhibit the hyphal growth of the mutant at a concentration that does not inhibi growth of the wild-type