Identification and Characterization of a Mucilaginibacter sp Strain QM49 β-Glucosidase and Its Use in the Production of the Pharmaceutically Active Minor Ginsenosides (S)-Rh1 and (S)-Rg2

被引:40
作者
Cui, Chang-Hao [1 ,2 ]
Liu, Qing-Mei [2 ,3 ]
Kim, Jin-Kwang [2 ]
Sung, Bong-Hyun [4 ]
Kim, Song-Gun [5 ]
Kim, Sun-Chang [1 ,2 ,3 ]
Im, Wan-Taek [2 ]
机构
[1] Korea Adv Inst Sci & Technol, Dept Biol Sci, Taejon 305701, South Korea
[2] Korea Adv Inst Sci & Technol, KAIST Inst Biocentury, Taejon 305701, South Korea
[3] Intelligent Synthet Biol Ctr, Taejon, South Korea
[4] Korea Res Inst Biosci & Biotechnol, Syst & Synthet Biol Res Ctr, Taejon, South Korea
[5] Korea Res Inst Biosci & Biotechnol, Biol Resource Ctr, Taejon, South Korea
关键词
ALPHA-L-ARABINOFURANOSIDASE; PANAX-GINSENG; COMPOUND K; ENZYMATIC BIOTRANSFORMATION; HUMAN ERYTHROCYTES; SP NOV; CONSTITUENTS; RB1; RH1; RE;
D O I
10.1128/AEM.01150-13
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Here, we isolated and characterized a new ginsenoside-transforming beta-glucosidase(BglQM) from Mucilaginibacter sp. strain QM49 that shows biotransformation activity for various major ginsenosides. The gene responsible for this activity, bglQM, consists of 2,346 bp and is predicted to encode 781 amino acid residues. This enzyme has a molecular mass of 85.6 kDa. Sequence analysis of BglQM revealed that it could be classified into glycoside hydrolase family 3. The enzyme was overexpressed in Escherichia coli BL21(DE3) using a maltose binding protein (MBP)-fused pMAL-c2x vector system containing the tobacco etch virus (TEV) proteolytic cleavage site. Overexpressed recombinant BglQM could efficiently transform the protopanaxatriol-type ginsenosides Re and Rg(1) into (S)-Rg(2) and (S)-Rh-1, respectively, by hydrolyzing one glucose moiety attached to the C-20 position at pH 8.0 and 30 degrees C. The K-m values for p-nitrophenyl-beta-D-glucopyranoside, Re, and Rg(1) were 37.0 +/- 0.4 mu M and 3.22 +/- 0.15 and 1.48 +/- 0.09 mM, respectively, and the V-max values were 33.4 +/- 0.6 mu mol min(-1) mg(-1) of protein and 19.2 +/- 0.2 and 28.8 +/- 0.27 nmol min(-1) mg(-1) of protein, respectively. A crude protopanaxatriol-type ginsenoside mixture (PPTGM) was treated with BglQM, followed by silica column purification, to produce (S)-Rh-1 and (S)-Rg(2) at chromatographic purities of 98% +/- 0.5% and 97% +/- 1.2%, respectively. This is the first report of gram-scale production of (S)-Rh-1 and (S)-Rg(2) from PPTGM using a novel ginsenoside-transforming beta-glucosidase of glycoside hydrolase family 3.
引用
收藏
页码:5788 / 5798
页数:11
相关论文
共 65 条
[11]  
Christensen LP, 2009, ADV FOOD NUTR RES, V55, P1, DOI 10.1016/S1043-4526(08)00401-4
[12]  
Cleland W W, 1979, Methods Enzymol, V63, P103
[13]  
Collins M.D., 1985, Methods Microbiol., V18, P329, DOI [10.1016/S0580-9517(08)70480-X, DOI 10.1016/S0580-9517(08)70480-X]
[14]   Characterization of the ginsenoside-transforming recombinant β-glucosidase from Actinosynnema mirum and bioconversion of major ginsenosides into minor ginsenosides [J].
Cui, Chang-Hao ;
Kim, Sun-Chang ;
Im, Wan-Taek .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2013, 97 (02) :649-659
[15]  
FELSENSTEIN J, 1985, EVOLUTION, V39, P783, DOI 10.1111/j.1558-5646.1985.tb00420.x
[16]  
Hall TA., 1999, NUCL ACIDS S SERIES, V41, P95, DOI DOI 10.14344/IOC.ML.11.1
[17]  
Harvey AJ, 2000, PROTEINS, V41, P257, DOI 10.1002/1097-0134(20001101)41:2<257::AID-PROT100>3.0.CO
[18]  
2-C
[19]   Molecular cloning of two genes for β-D-glucosidase in Bacillus sp. GL1 and identification of one as a gellan-degrading enzyme [J].
Hashimoto, W ;
Miki, H ;
Nankai, H ;
Sato, N ;
Kawai, S ;
Murata, K .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1998, 360 (01) :1-9
[20]   Enzymatic Biotransformation of Ginsenoside Rb1 and Gypenoside XVII into Ginsenosides Rd and F2 by Recombinant β-glucosidase from Flavobacterium johnsoniae [J].
Hong, Hao ;
Cui, Chang-Hao ;
Kim, Jin-Kwang ;
Jin, Feng-Xie ;
Kim, Sun-Chang ;
Im, Wan-Taek .
JOURNAL OF GINSENG RESEARCH, 2012, 36 (04) :418-424