3.2.1.59: glucan endo-1,3-alpha-glucosidase
This is an abbreviated version!
For detailed information about glucan endo-1,3-alpha-glucosidase, go to the full flat file.
Word Map on EC 3.2.1.59
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3.2.1.59
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mutans
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glucans
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dental
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trichoderma
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dextranase
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harzianum
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paenibacillus
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circulans
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caries
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streptococcal
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medicine
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water-insoluble
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protoplast-forming
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cariogenic
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schizophyllum
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saccharification
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glucanohydrolases
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endolysis
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laetiporus
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sobrinus
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endo-beta-1,3-glucanase
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curdlanolyticus
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sulphureus
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rosetta-gami
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pharmacology
- 3.2.1.59
- mutans
- glucans
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dental
- trichoderma
- dextranase
- harzianum
- paenibacillus
- circulans
- caries
- streptococcal
- medicine
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water-insoluble
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protoplast-forming
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cariogenic
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schizophyllum
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saccharification
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glucanohydrolases
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endolysis
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laetiporus
- sobrinus
- endo-beta-1,3-glucanase
- curdlanolyticus
- sulphureus
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rosetta-gami
- pharmacology
Reaction
Synonyms
Agl-FH1, Agl-FH2, Agl-KA, AglST2, Agn1p, Agn2, Agn2p, alpha-1,3 endoglucanase, alpha-1,3-glucanase, alpha-1,3-glucanase HF65, alpha-1,3-glucanase HF90, cariogenanase, cariogenase, endo alpha-1,3-glucanase, endo-(1,3)-alpha-glucanase, endo-(1-->3)-alpha-glucanase, endo-(1-3)-alpha-glucanase, endo-1,3-alpha-D-glucanase, endo-1,3-alpha-glucanase, endo-alpha-1,3-glucanase, FH11, glucanase, endo-1,3-alpha-mutanase, MuB, MuC1, MuC2, mutanase, MutAp
ECTree
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General Information
General Information on EC 3.2.1.59 - glucan endo-1,3-alpha-glucosidase
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evolution
malfunction
physiological function
additional information
the enzyme belongs to the glycosyl hydrolase family 71, GH71, phylogenetic tree, overview
evolution
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the enzyme belongs to the glycosyl hydrolase family 71, GH71, phylogenetic tree, overview
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domain deletion enzyme mutants lacking discoidin domains DS1 and DS2 and carbohydrate binding module family 6 domain exhibit lower alpha-1,3-glucan-hydrolyzing and substrate-binding activities than the wild-type enzyme. A dramatic decrease in protoplast formation in the Schizophyllum commune mycelium is observed given only a domain DS1 deletion
malfunction
Niallia circulans KA-304
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domain deletion enzyme mutants lacking discoidin domains DS1 and DS2 and carbohydrate binding module family 6 domain exhibit lower alpha-1,3-glucan-hydrolyzing and substrate-binding activities than the wild-type enzyme. A dramatic decrease in protoplast formation in the Schizophyllum commune mycelium is observed given only a domain DS1 deletion
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When Schizosaccharomyces pombe diploid cells undergo meiosis, they differentiate into asci containing four haploid ascospores that are highly resistant to environmental stress. beta-Glucanase Eng2 and endo-alpha-1,3-glucanase Agn2 are required for ascus wall endolysis after sporulation in Schizosaccharomyces pombe
physiological function
possible role of the enzyme in the remodeling of Paracoccidioides brasiliensis Y phase cell wall
physiological function
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the enzyme is involved in fungal cell wall degradation
physiological function
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enzyme expression in rice induces resistance against sheath bligh
physiological function
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possible role of the enzyme in the remodeling of Paracoccidioides brasiliensis Y phase cell wall
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physiological function
Niallia circulans KA-304
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the enzyme is involved in fungal cell wall degradation
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discoidin domains DS1 and DS2 and carbohydrate binding module family 6 domain are involved in alpha-1,3-glucan and fungal cell wall substrate binding, while the uncharacterized conserved domain is not, overview
additional information
interaction and transcriptional responses analysis between Penicillium chrysogenum and Bacillus subtilis, overview
additional information
interaction and transcriptional responses analysis between Penicillium chrysogenum and Bacillus subtilis, overview
additional information
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interaction and transcriptional responses analysis between Penicillium chrysogenum and Bacillus subtilis, overview
additional information
Niallia circulans KA-304
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discoidin domains DS1 and DS2 and carbohydrate binding module family 6 domain are involved in alpha-1,3-glucan and fungal cell wall substrate binding, while the uncharacterized conserved domain is not, overview
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additional information
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interaction and transcriptional responses analysis between Penicillium chrysogenum and Bacillus subtilis, overview
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