β-D-木糖苷酶 E-BXSR β-D-Xylosidase (Selenomonas ruminantium)
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β-D-木糖苷酶 E-BXSR β-D-Xylosidase

(Selenomonas ruminantium)
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  • ¥2297
  • Megazyme
  • 爱尔兰
  • E-BXSR
  • 2025年12月11日
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    • 详细信息
    • 询价记录
    • 文献和实验
    • 技术资料
    • 保质期

      1年

    • 英文名

      β-D-Xylosidase (Selenomonas ruminantium)

    • 库存

      请咨询

    • 供应商

      上海经科化学科技有限公司

    • 保存条件

      2-8℃

    • 规格

      1,000 units


    β-D-木糖苷酶

    中文名称:β-D-木糖苷酶

    英文名称:β-D-Xylosidase (Selenomonas ruminantium)

    货号:E-BXSR

    规格:1,000 units

    价格:2297元 

    High purity recombinant exo-1,4-β-D-Xylosidase (Selenomonas ruminantium) for use in research, biochemical enzyme assays and in vitro diagnostic analysis.

    Content: 1,000 Units or 3,000 Units
    Shipping Temperature: Ambient
    Storage Temperature: 2-8oC
    Formulation: In 3.2 M ammonium sulphate
    Physical Form: Suspension
    Stability: > 1 year under recommended storage conditions
    Enzyme Activity: β-Xylosidase
    EC Number: 3.2.1.37
    CAZy Family: GH43
    CAS Number: 9025-53-0
    Synonyms: xylan 1,4-beta-xylosidase; 4-beta-D-xylan xylohydrolase
    Source: Selenomonas ruminantium
    Molecular Weight: 61,900
    Concentration: E-BXSR-1KU: Supplied at ~ 500 U/mL.
    E-BXSR-3KU: Supplied at ~ 500 U/mL.
    Expression: Recombinant from Selenomonas ruminantium
    Specificity: Hydrolysis of (1,4)-β-D-xylans and xylo-oligosaccharides to remove successive D-xylose residues from non-reducing termini.
    Specific Activity: ~ 90 U/mg (40oC, pH 5.3 on pNP-β-D-xylanopyranoside)
    Unit Definition: One Unit of β-xylosidase activity is defined as the amount of enzyme required to release one µmole of p-nitrophenol (pNP) per minute from p-nitrophenyl-β-D-xylopyranoside (5 mM) in sodium succinate buffer (50 mM), pH 5.3 at 40oC.
    Temperature Optima: 50oC
    pH Optima: 5
    Application examples: Applications in carbohydrate and biofuels research.



    β-D-木糖苷酶说明书(PDF)请向客服索取!

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    该产品被引用文献

    1.Beneficial effect of surfactant in adsorption/desorption of lignocellulose-degrading enzymes on/from lignin with different structure.

    Wang, J., Xiao, W., Zhang, J., Quan, X., Chu, J., Meng, X., Pu, Y. & Ragauskas, A. J. (2023). Industrial Crops and Products, 191, 115904.

    2.Evolutionary engineering of Lactobacillus pentosus improves lactic acid productivity from xylose-rich media at low pH.

    Cubas-Cano, E., González-Fernández, C. & Tomás-Pejó, E. (2019). Bioresource Technology, 288, 121540.

    3.The effect of an oligosaccharide reducing-end xylanase, BhRex8A, on the synergistic degradation of xylan backbones by an optimised xylanolytic enzyme cocktail.

    Malgas, S. & Pletschke, B. I. (2019). Enzyme and Microbial Technology, 122, 74-81.

    4.Formulation of an optimized synergistic enzyme cocktail, HoloMix, for effective degradation of various pre-treated hardwoods.

    Malgas, S., Chandra, R., Van Dyk, J. S., Saddler, J. N. & Pletschke, B. I. (2017). Bioresource Technology, 245, Part A, 52-65.

    5.Role of hemicellulases in production of fermentable sugars from corn stover.

    Xin, D., Sun, Z., Viikari, L. & Zhang, J. (2015). Industrial Crops and Products, 74, 209-217.

    图标技术资料

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    资料下载:

    E-BXSR-1KU_COA_1.pdf 附 (下载 0 次)

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    β-D-木糖苷酶 E-BXSR β-D-Xylosidase (Selenomonas ruminantium)
    ¥2297