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昆布二糖

昆布二糖
  • 英文名:Laminaribiose
  • 别名:
  • 级别:Purity: > 95%
  • 分子式:C12H22O11
  • 分子量:342.3
  • 品牌:Megazyme
  • CAS:34980-39-7
  • 外观:

产品简介

Megazyme 昆布二糖, Laminaribiose, 货号:O-LAM2, 用于研究、酶生化分析和体外诊断分析。

产品详情

昆布二糖, Laminaribiose, 货号:O-LAM2
品牌:Megazyme
货号:O-LAM2
中文品名:昆布二糖
品名:Laminaribiose
CASN:34980-39-7
纯度: >95%
包装: 50 mg
来源:通过控制凝胶多糖的酸性水解制得。
用途:高纯度昆布二糖用于研究、酶生化分析和体外诊断分析。
Laminaribiose, O-LAM2
参考文献:
Versatile high resolution oligosaccharide microarrays for plant glycobiology and cell wall research. Pedersen, H. L., Fangel, J. U., McCleary, B., Ruzanski, C., Rydahl, M. G., Ralet, M. C., Farkas, V., Von Schantz, L., Marcus, S. E., Andersen, M.C. F., Field, R., Ohlin, M., Knox, J. P., Clausen, M. H. & Willats, W. G. T. (2012). Journal of Biological Chemistry, 287(47), 39429-39438.
Efficient chemoenzymatic oligosaccharide synthesis by reverse phosphorolysis using cellobiose phosphorylase and cellodextrin phosphorylase from Clostridium thermocellum. Nakai, H., Hachem, M. A., Petersen, B. O., Westphal, Y., Mannerstedt, K., Baumann, M. J., Dilokpimol, A., Schols, H. A., Duus, J. Ø. & Svensson, B. (2010). Biochimie, 92(12), 1818-1826.
Functional analyses of the digestive β-glucosidase of Formosan subterranean termites (Coptotermes formosanus). Zhang, D., Allen, A. B. & Lax, A. R. (2012). Journal of Insect Physiology, 58(1), 205-210.
Isolation and properties of fungal β-glucosidases. Korotkova, O. G., Semenova, M. V., Morozova, V. V., Zorov, I. N., Sokolova, L. M., Bubnova, T. M., Okunev, O. N. & Sinitsyn, A. P. (2009). Biochemistry (Moscow), 74(5), 569-577
Fruit Fly Bioassay To Distinguish “Sweet” Sugar Structures. Hodoniczky, J., Robinson, G. J., McGraw, E. A. & Rae, A. L. (2010). Journal of Agricultural and Food Chemistry, 58(24), 12885-12889.
Rational engineering of Lactobacillus acidophilus NCFM maltose phosphorylase into either trehalose / kojibiose dual specificity phosphorylase. Nakai, H., Petersen, B. O., Westphal, Y., Dilokpimol, A., Hachem, M. A., Duus, J. Ø., Schols, H. A. & Svensson, B. (2010). Protein Engineering Design and Selection, 23(10), 781-787.
Identification of anomeric configuration of underivatized reducing glucopyranosyl-glucose disaccharides by tandem mass spectrometry and multivariate analysis. Simões, J., Domingues, P., Reis, A., Nunes, F. M., Coimbra, M. A. & Domingues, M. R. M. (2007). Analytical Chemistry, 79(15), 5896-5905.
Flavobacterium johnsoniae as a model organism for characterizing biopolymer utilization in oligotrophic freshwater environments. Sack, E. L. W., van der Wielen, P. W. J. J. & van der Kooij, D. (2011). Applied and Environmental Microbiology, 77(19), 6931-6938.
Occurrence of cellobiose residues directly linked to galacturonic acid in pectic polysaccharides. Nunes, C., Silva, L., Fernandes, A. P., Guiné, R. P. F., Domingues, M. R. M. & Coimbra, M. A. (2012). Carbohydrate Polymers, 87(1), 620-626.
The maltodextrin transport system and metabolism in Lactobacillus acidophilus NCFM and production of novel α‐glucosides through reverse phosphorolysis by maltose phosphorylase. Nakai, H., Baumann, M. J., Petersen, B. O., Westphal, Y., Schols, H., Dilokpimol, A., Hachem, M. A., Lahtinen, S. J., Duus, J. Ø. & Svensson, B. (2009). FEBS Journal, 276(24), 7353-7365.
Cell-free protein synthesis of membrane (1,3)-β-D-glucan (curdlan) synthase: Co-translational insertion in liposomes and reconstitution in nanodiscs. Periasamy, A., Shadiac, N., Amalraj, A., Garajová, S., Nagarajan, Y., Waters, S., Mertens, H. D. T. & Hrmova, M. (2013). Biochimica et Biophysica Acta (BBA)-Biomembranes, 1828(2), 743-757.
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