3.2.1.49: alpha-N-acetylgalactosaminidase
This is an abbreviated version!
For detailed information about alpha-N-acetylgalactosaminidase, go to the full flat file.
Word Map on EC 3.2.1.49
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3.2.1.49
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n-acetylgalactosamine
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sialidase
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fabry
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schindler
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exoglycosidase
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neuroaxonal
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d3-binding
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gcmaf
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angiokeratoma
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alpha-linked
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beta-galnac
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macrophage-activating
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pomatia
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corporis
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diffusum
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biflorus
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mucin-type
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medicine
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alpha-n-acetylgalactosaminyltransferase
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alpha-n-acetylgalactosamine
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asialo
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diagnostics
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biotechnology
- 3.2.1.49
- n-acetylgalactosamine
- sialidase
- fabry
-
schindler
-
exoglycosidase
-
neuroaxonal
-
d3-binding
-
gcmaf
- angiokeratoma
-
alpha-linked
-
beta-galnac
-
macrophage-activating
- pomatia
-
corporis
- diffusum
- biflorus
-
mucin-type
- medicine
-
alpha-n-acetylgalactosaminyltransferase
- alpha-n-acetylgalactosamine
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asialo
- diagnostics
- biotechnology
Reaction
Synonyms
2-acetamido-2-deoxy-alpha-D-galactoside acetamidodeoxygalactohydrolase, 4-nitrophenyl-alpha-N-acetylgalactosaminidase, AglA, alpha-acetylgalactosaminidase, alpha-galactosidase B, alpha-GalNAc, alpha-GalNAc-ase, alpha-GalNAcase, alpha-GalNAcase I, alpha-GalNAcase II, alpha-N acetylgalactosaminidase, alpha-N-acetylgalactosaminidase blood group A2 degrading enzyme, alpha-N-galactosaminidase IV, alpha-NAGA, alpha-NAGAL, alpha-NaGalase, envelope glycoprotein gp160, exo-alpha-N-acetylgalactosaminidase, N-acetyl-alpha-D-galactosaminidase, N-acetyl-alpha-galactosaminidase, NagA, NaGalase
ECTree
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General Information
General Information on EC 3.2.1.49 - alpha-N-acetylgalactosaminidase
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evolution
malfunction
additional information
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comparison of the binding ability of alpha-N-acetylgalactosaminidase with red blood cells in different reaction buffers, such as normal saline, phosphate-buffered saline, a disodium hydrogen phosphate-based buffer, and 5% commercial glucose solution. Glucose buffer is suitable for blood group conversion with alpha-N acetylgalactosaminidase
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
evolution
Formosa sp. KMM 6408
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
evolution
Arenibacter sp. KMM 6041
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
evolution
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the enzyme belongs to the glycoside hydrolase family GH 109
evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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evolution
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occurrence of alpha-N-acetylgalactosaminidases among the marine epiphytic bacteria isolated from green, red, and brown algae, bacteria of the genera Arenibacter, Cellulophaga, Formosa, Maribacter, Zobellia, and Winogradskyella are the prevailing taxa, screening, overview
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deficiency of alpha-NAGAL activity results in the lysosomal storage disorders Schindler disease and Kanzaki disease, molecular basis, overview
malfunction
enzyme deficiency in Fabry disease causes globotriaosylceramide accumulation in the liver, kidneys, and heart of Fabry patients, phenotype, overview. Wild-type enzyme intravenously injected into Fabry model mice prevents the globotriaosylceramide storage and improves the pathological changes in the organs, overview
malfunction
Schindler disease is a lysosomal storage disorder caused due to deficiency or defective activity of alpha-N-acetylgalactosaminidase