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NTIS 바로가기Bioscience, biotechnology, and biochemistry, v.73 no.2, 2009년, pp.316 - 321
NOH, Kyeong-Hwan (Department of Bioscience and Biotechnology, Konkuk University) , SON, Ju-Wan (Department of Bioscience and Biotechnology, Konkuk University) , KIM, Hye-Jung (Department of Bioscience and Biotechnology, Konkuk University) , OH, Deok-Kun (Department of Bioscience and Biotechnology, Konkuk University)
Ginsenoside compound K was produced from ginseng root extract using a thermostable recombinant β-glycosidase from Sulfolobus solfataricus. The pH and temperature for maximum production were 5.5 and 90 °C. The half-lives of the enzyme were 66, 30, and 1.7 h at 80, 85, and 90 °C respectiv...
Son, Ju-Wan, Kim, Hye-Jung, Oh, Deok-Kun. Ginsenoside Rd production from the major ginsenoside Rb1 by β-glucosidase from Thermus caldophilus. Biotechnology letters. : a monthly journal for the rapid communication of results and developments in all aspects of biotechnology, vol.30, no.4, 713-716.
Cheng, Le-Qin, Kim, Myung Kyum, Lee, Jun-Won, Lee, Youn-Jin, Yang, Deok-Chun. Conversion of Major Ginsenoside Rb1 to Ginsenoside F2 by Caulobacter leidyia. Biotechnology letters. : a monthly journal for the rapid communication of results and developments in all aspects of biotechnology, vol.28, no.14, 1121-1127.
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0304-3940 Neurosci. Lett. Choi, K., Kim, M., Ryu, J., and Cho 421 37 2007 10.1016/j.neulet.2007.05.017
Choo, Min-Kyung, Park, Eun-Kyung, Han, Myung Joo, Kim, Dong-Hyun. Antiallergic activity of ginseng and its ginsenosides.. Planta medica, vol.69, no.6, 518-522.
Liver Int. Lee, H. U., Bae, E. A., Han, M. J., 25 1069 2005 10.1111/j.1478-3231.2005.01068.x
Zhou, W., Yan, Q., Li, J.-Y., Zhang, X.-C., Zhou, P.. Biotransformation of Panax notoginseng saponins into ginsenoside compound K production by Paecilomyces bainier sp. 229. Journal of applied microbiology, vol.104, no.3, 699-706.
Han, Ying., Sun, Baoshan., Hu, Xiaomin., Zhang, Hong., Jiang, Binhui., Spranger, Maria Isabel., Zhao, Yuqing.. Transformation of Bioactive Compounds by Fusarium sacchari Fungus Isolated from the Soil-Cultivated Ginseng. Journal of agricultural and food chemistry, vol.55, no.23, 9373-9379.
Kim, Bo-Hye, Lee, Sun-Yi, Cho, Hyo-Jin, You, Sun-Nyoung, Kim, Yeong-Jin, Park, Yeong-Min, Lee, Jae-Kwon, Baik, Moo-Yeol, Park, Cheon-Seok, Ahn, Soon-Cheol. Biotransformation of Korean Panax ginseng by Pectinex. Biological & pharmaceutical bulletin, vol.29, no.12, 2472-2478.
Ko, Sung-Ryong, Suzuki, Yukio, Suzuki, Kei, Choi, Kang-Ju, Cho, Byung-Goo. Marked Production of Ginsenosides Rd, F2, Rg3, and Compound K by Enzymatic Method. Chemical & pharmaceutical bulletin, vol.55, no.10, 1522-1527.
Yu, Hongshan, Zhang, Chunzhi, Lu, Mingchun, Sun, Fang, Fu, Yaoyao, Jin, Fengxie. Purification and Characterization of New Special Ginsenosidase Hydrolyzing Multi-Glycisides of Protopanaxadiol Ginsenosides, Ginsenosidase Type I. Chemical & pharmaceutical bulletin, vol.55, no.2, 231-235.
0885-4513 Biotechnol. Appl. Biochem. 17 2 239 1993 10.1111/j.1470-8744.1993.tb00242.x
Kim, Yeong-Su, Park, Chang-Su, Oh, Deok-Kun. Lactulose production from lactose and fructose by a thermostable β-galactosidase from Sulfolobus solfataricus. Enzyme and microbial technology, vol.39, no.4, 903-908.
Jing, H, Kitts, D.D. Chemical and biochemical properties of casein–sugar Maillard reaction products. Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association, vol.40, no.7, 1007-1015.
0300-0893 J. Pharmaceut. Biomed. Huang, C., Wang, G., Li, H., Xie, H 40 788 2006 10.1016/j.jpba.2005.10.015
YAN, Qin, ZHOU, Wei, LI, Xingwei, FENG, Meiqing, ZHOU, Pei. Purification Method Improvement and Characterization of a Novel Ginsenoside-Hydrolyzing β-Glucosidase from Paecilomyces Bainier sp. 229. Bioscience, biotechnology, and biochemistry, vol.72, no.2, 352-359.
0959-3993 World J. Microbiol. Biotechnol. Park, H. Y., Kim, H. J., Lee, J. K. 24 1553 2008 10.1007/s11274-007-9642-x
Aguilar, C.F., Sanderson, I., Moracci, M., Ciaramella, M., Nucci, R., Rossi, M., Pearl, L.H.. Crystal structure of the β-glycosidase from the hyperthermophilic archeon Sulfolobus solfataricus: resilience as a key factor in thermostability. Journal of molecular biology, vol.271, no.5, 789-802.
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