甘露五糖, Mannopentaose, 貨號(hào):O-MPE
中文品名:甘露五糖
品名:Mannopentaose
CASN:70281-35-5
純度: >95%
包裝: 30 mg
來源:控制甘露多糖的酶法水解制得。
用途:高純度甘露五糖用于研究、酶生化分析和體外診斷分析。
參考文獻(xiàn):
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.
A cellulose-binding module of the Trichoderma reesei β-mannanase Man5A increases the mannan-hydrolysis of complex substrates. H?gglund, P., Eriksson, T., Collén, A., Nerinckx, W., Claeyssens, M. & St?lbrand, H. (2003). Journal of Biotechnology, 101(1), 37-48.
Fractionation of extracted hemicellulosic saccharides from Pinus pinaster wood by multistep membrane processing. González-Mu?oz, M. J., Rivas, S., Santos, V. & Parajó, J. C. (2013). Journal of Membrane Science, 428, 281-289.
Structure of a mannan-specific family 35 carbohydrate-binding module: evidence for significant conformational changes upon ligand binding. Tunnicliffe, R. B., Bolam, D. N., Pell, G., Gilbert, H. J. & Williamson, M. P. (2005). Journal of Molecular Biology, 347(2), 287-296.
A (1→4)-β-mannan-specific monoclonal antibody and its use in the immunocytochemical location of galactomannans. Pettolino, F. A., Hoogenraad, N. J., Ferguson, C., Bacic, A., Johnson, E. & Stone, B. A. (2001). Planta, 214(2), 235-242.
A novel thermophilic endo-β-1, 4-mannanase from Aspergillus nidulans XZ3: functional roles of carbohydrate-binding module and Thr/Ser-rich linker region. Lu, H., Luo, H., Shi, P., Huang, H., Meng, K., Yang, P. & Yao, B. (2014). Applied Microbiology and Biotechnology, 98(5), 2155-2163.
LeMAN4 endo-β-mannanase from ripe tomato fruit can act as a mannan transglycosylase/hydrolase. Schr?der, R., Wegrzyn, T. F., Sharma, N. N. & Atkinson, R. G. (2006). Planta, 224(5), 1091-1102.
Substrate Specificities of α-Galactosidase from Rice. Li, S. H., Zhu, M. P. & Li, T. P. (2011). Advanced Materials Research, 183, 447-451.
The modular architecture of Cellvibrio japonicus mannanases in glycoside hydrolase families 5 and 26 points to differences in their role in mannan degradation. Hogg, D., Pell, G., Dupree, P., Goubet, F., Martin-Orue, S., Armand, S. & Gilbert, H. (2003). Biochem. J, 371, 1027-1043.
Model for random hydrolysis and end degradation of linear polysaccharides: Application to the thermal treatment of mannan in solution. Nattorp, A., Graf, M., Spühler, C. & Renken, A. (1999). Industrial & Engineering Chemistry Research, 38(8), 2919-2926.
Acidic β-mannanase from Penicillium pinophilum C1: Cloning, characterization and assessment of its potential for animal feed application. Cai, H., Shi, P., Luo, H., Bai, Y., Huang, H., Yang, P. & Yao, B. (2011). Journal of Bioscience and Bioengineering, 112(6), 551-557.
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