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Merck

X2629

Sigma-Aldrich

endo-1,4-β-Xylanase from Trichoderma longibrachiatum

greener alternative

Sinónimos:

1,4-β-D-Xylanxylanohydrolase

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About This Item

Comisión internacional de enzimas:
Número CE:
Número MDL:
Código UNSPSC:
12352204

Formulario

powder

Nivel de calidad

actividad específica

≥1.0 units/mg solid

composición

Protein, ≥10%

características de los productos alternativos más sostenibles

Waste Prevention
Learn more about the Principles of Green Chemistry.

categoría alternativa más sostenible

temp. de almacenamiento

room temp

Descripción general

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 waste prevention when used in cellulosic ethanol research. For more information see the article in biofiles.

Acciones bioquímicas o fisiológicas

Primary activity is an acid-neutral endo-1,4-β-D-xylanase, additional activities include β-glucanase, cellulase, pectinase, mannanase, xyloglucanase, laminarase, β-glucosidase, β-xylosidase, α-L-arabinofuranosidase, amylase, and protease.

Definición de unidad

One unit will liberate 1 μmole of reducing sugar measured as xylose equivalents from xylan (Cat. No. X0627) per min at pH 4.5 at 30 °C.

Pictogramas

Health hazard

Palabra de señalización

Danger

Frases de peligro

Consejos de prudencia

Clasificaciones de peligro

Resp. Sens. 1

Código de clase de almacenamiento

11 - Combustible Solids

Clase de riesgo para el agua (WGK)

WGK 3

Punto de inflamabilidad (°F)

Not applicable

Punto de inflamabilidad (°C)

Not applicable


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Certificados de análisis (COA)

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Visite la Librería de documentos

Ting Miao et al.
Frontiers in bioengineering and biotechnology, 9, 690702-690702 (2021-09-14)
Xylanases with high specific activity has been focused with great interest as a useful enzyme in biomass utilization. The production of recombinant GH11 xylanase (MYCTH_56237) from Myceliophthora thermophila has been improved through N-terminal signal peptide engineering in P. pastoris. The
Dandan Li et al.
Biotechnology for biofuels, 13, 106-106 (2020-06-17)
The sorghum stem can be divided into the pith and rind parts with obvious differences in cell type and chemical composition, thus arising the different recalcitrance to enzyme hydrolysis and demand for different pretreatment conditions. The introduction of organic solvents
Dae-Seok Lee et al.
Biotechnology for biofuels, 14(1), 37-37 (2021-02-08)
Woody plants with high glucose content are alternative bioresources for the production of biofuels and biochemicals. Various pretreatment methods may be used to reduce the effects of retardation factors such as lignin interference and cellulose structural recalcitrance on the degradation
Zhenghui Liu et al.
Frontiers in bioengineering and biotechnology, 9, 814246-814246 (2022-02-15)
Supplementing commercial xylanase and cellulase with selected debranching enzymes only resulted in slight enhancement of the enzymatic hydrolysis of wheat bran autohydrolysis residues (WBAR) which was obtained at 160°C over a 30-min period of autohdyrolysis, while a blend of enzymes
Padil et al.
RSC advances, 13(31), 21403-21413 (2023-07-19)
Tetraselmis chuii is a potential microalgae that is in consideration for producing bioethanol owing to its large content of carbohydrates. The glucose production from T. chuii through an enzymatic process with cellulase and xylanase (pretreatment process) and α-amylase and glucoamylase

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