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Merck

G4511

β-Glucosidase from almonds

greener alternative

lyophilized powder, 10-50 units/mg solid

Sinónimos:

β-D-Glucoside glucohydrolase

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Número CAS:
UNSPSC Code:
12352204
NACRES:
NA.54
EC Number:
232-589-7
MDL number:
Número CE:
Specific activity:
10-50 units/mg solid
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form

lyophilized powder

specific activity

10-50 units/mg solid

mol wt

50-75 kDa

greener alternative product characteristics

Waste Prevention
Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

impurities

salt, essentially free

greener alternative category

storage temp.

2-8°C

Quality Level

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General description

β-Glucosidase from almonds belongs to the family 1 of the glycoside hydrolases. Almonds contain prunasin hydrolases (PH) and amygdalin hydrolase. Nine types of PHs are associated with almonds. PHs have signal peptide sequence and correspond to molecular weight in the range 50 to 75 kDa. PHs also have ITENG, NEP and INKKGIEYY motifs conserved and have N-glycosylation sites.
We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product has been enhanced for energy efficiency and waste prevention when used in cellulosic ethanol research. For more information see the article in biofiles.

Application

β-Glucosidase from almonds has been used:
  • in enzyme inhibition studies by 1,5-dideoxy-1,5-imino-d-xylitol(DIX) derivates
  • as a control in for comparison of soybean isofavone glycosides degradation by β-Glucosidase from Talaromyce leycettanus
  • as a medium component during saccharification and fermentation of yeast

β-glucosidase is also used in the synthesis of glucosides and fucosides with various potential applications in pharmaceutical, cosmetic and detergent industries, hydrolytic removal of aglycone moiety from flavonoid and isoflavonoid glycosides, flavor enhancement of fruit juices and wine, and biosynthesis of oligosaccharides.

Biochem/physiol Actions

βglucosidase is involved in the hydrolysis of β-glycosidic bonds connecting carbohydrate residues in β-D-glycosides. They convert cellobiose and cellooligosaccharides produced by the endo and exoglucanases to glucose.
Prunasin hydrolase (PH) is a β-glucosidase that degrades prunasin to mandelonitrile and glucose. Amygdalin hydrolase hydrolyzes amygdalin to prunasin and glucose. β-Glucosidase is mesostable and is sensitive to temperature at 60 °C and above. It is highly sensitive to high pressure.

Preparation Note

Chromatographically purified

Other Notes

One unit will liberate 1.0 μmole of glucose from salicin per min at pH 5.0 at 37 °C.

pictograms

Health hazard

signalword

Danger

hcodes

Hazard Classifications

Resp. Sens. 1

Clase de almacenamiento

11 - Combustible Solids

wgk

WGK 1

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

dust mask type N95 (US), Eyeshields, Faceshields, Gloves


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The stability of almond beta-glucosidase during combined high pressure-thermal processing: a kinetic study
Terefe N, et al.
Applied Microbiology and Biotechnology, 97(7), 2917-2928 (2013)
Matthias Lechtenberg et al.
Planta medica, 88(13), 1209-1222 (2021-11-17)
A systematic survey of Aralia spinosa (Araliaceae), covering an entire growing season and including aboveground organs at various developmental stages, revealed that only about half of all samples collected showed cyanogenesis. Cyanogenesis was detected in inflorescences and leaves but is
Galaihalage K S Ananda et al.
Planta, 255(2), 51-51 (2022-01-28)
Australian native species of sorghum contain negligible amounts of dhurrin in their leaves and the cyanogenesis process is regulated differently under water-stress in comparison to domesticated sorghum species. Cyanogenesis in forage sorghum is a major concern in agriculture as the
J E Busch et al.
Microbiology (Reading, England), 143(6), 2021-2026 (1997-06-01)
Thermophilic actinomycetes establish themselves as numerically dominant bacterial populations in selected high temperature environments by virtue of their exoenzymic ability to degrade the complex polysaccharides in thermogenic plant biomass. When Thermomonospora curvata and Thermomonospora fusca were grown on a mixture
A Novel Thermostable GH3 beta-Glucosidase from Talaromyce leycettanus with Broad Substrate Specificity and Significant Soybean Isoflavone Glycosides-Hydrolyzing Capability
Li X, et al.
BioMed Research International, 2018 (2018)

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