甘露三糖, Mannotriose, 货号:O-MTR
中文品名:甘露三糖
品名:Mannotriose
CASN:28173-52-6
纯度: >95%
包装: 50 mg
来源:控制甘露多糖的酶法水解制得。
用途:高纯度甘露三糖用于研究、酶生化分析和体外诊断分析。
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.
Softwood hemicellulose-degrading enzymes from Aspergillus niger: Purification and properties of a β-mannanase. Ademark, P., Varga, A., Medve, J., Harjunp??, V., Drakenberg, T., Tjerneld, F. & St?lbrand, H. (1998). Journal of Biotechnology, 63(3), 199-210.
Protein release from galactoglucomannan hydrogels: influence of substitutions and enzymatic hydrolysis by β-mannanase. Roos, A. A., Edlund, U., Sjoberg, J., Albertsson, A. C. & Stålbrand, H. (2008). Biomacromolecules, 9(8), 2104-2110.
Mannotriose regulates learning and memory signal transduction in the hippocampus. Zhang, L., Dai, W., Zhang, X., Gong, Z. & Jin, G. (2013). Neural Regeneration Research, 8(32), 3020-3026.
Operational and storage stability of neutral β-mannanase from Bacillus licheniformis. Zhang, J., He, M. & He, Z. (2002). Biotechnology Letters, 24(19), 1611-1613.
Substrate Specificities of α-Galactosidase from Rice. Li, S. H., Zhu, M. P. & Li, T. P. (2011). Advanced Materials Research, 183, 447-451.
Purification and characterization of two β-mannanases from Trichoderma reesei. Stålbrand, H., Siika-aho, M., Tenkanen, M. & Viikari, L. (1993). Journal of Biotechnology, 29(3), 229-242.
Fractionation of extracted hemicellulosic saccharides from Pinus pinaster wood by multistep membrane processing. González-Muñoz, M. J., Rivas, S., Santos, V. & Parajó, J. C. (2013). Journal of Membrane Science, 428, 281-289.
β-Mannanolytic system of Aureobasidium pullulans. Kremnický, L. & Biely, P. (1997). Archives of Microbiology, 167(6), 350-355.
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(3), 1027-1043.
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