• Title/Summary/Keyword: ${\beta},D-glucosidase$

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Isolation of N-Containing Sugars from Silkworm Urine and Their Glycosidase Inhibitory Activities (잠뇨로부터 질소함유 당물질 분리 및 glycosidase에 대한 저해활성)

  • 송주경;정성현
    • Biomolecules & Therapeutics
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    • v.6 no.4
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    • pp.364-370
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    • 1998
  • Glycosidase inhibitors from urine of Bombyx mori were isolated and their inhibitory activities on glycosidases were evaluated. Six compounds were isolated by using several ion exchange columns, and their chemical structures were identified by the physicochemical and spectral data. Compound IV, V and Ⅵ were identified as 1-deoxynojirimycin, fagomine and 1,4-dideoxy-1,4-imino-D-arabinitol, respectively. Among six compounds isolated,1-deoxynojirimycin(IV) was the most potent inhibitor on $\alpha$-glucosidase and $\beta$-galactosidase of rat intestine, and its inhibitory activities for trehalase and almond $\beta$-glucosidase were relatively weak. Compound V and Ⅵl retained a little inhibitory potency toward $\alpha$-glucosidase and $\beta$-galactosidase. Compound II and III, however, have been found to have no effect on all glycosidases tested in this study.

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Reducing Power and ${\alpha}-Glucosidase$ Inhibitory profiles of (-)-Catechin and Its glycoside ((-)-Catechin 및 배당체의 환원력 및 ${\alpha}-glucosidase$저해 활성)

  • Jung, Mee-Jung;Heo, Seong-Il;Wang, Myeong-Hyeon
    • Korean Journal of Pharmacognosy
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    • v.38 no.4
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    • pp.358-362
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    • 2007
  • From the EtOAc fraction of the MeOH extract of Ulmus davidiana, (-)-catechin (1), (-)-catechin-7-O-${\beta}$-D-apiofuranoside (2), and (-)-catechin-7-O-${\beta}$-D-xylopyranoside (3) were isolated and characterized on the basis of $^1H-and\;^{13}C-NMR$, and FABMS spectral data. Compounds 1-3 showed more strong reducing power activities than ${\alpha}-tocopherol$, a positive control.

Purification and Characterization of High-Molecular-Weight $\beta$-Glucosidase from Trichoderma koningii (Trichoderma koningii가 생성하는 고분자량 $\beta$-glucosidase의 정제 및 특성)

  • 맹필재;정춘수;하영칠;홍순우
    • Korean Journal of Microbiology
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    • v.24 no.3
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    • pp.251-262
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    • 1986
  • High-molecular-weight ${\beta}-glucosidase$ (EC 3.2.1.21) was purified from the culture filtrate of Trichoderma koningii through a four-step procedure including chromatography on Bio-Gel P-150, DEAE-Sephadex A-50 and SP-Sephadex C-50; and chromatofocusing on Polybuffer exchanger PBE 94. The molecular weight of the enzyme was determined to be about 101,000 by SDS-polyacrylamide gel electrophoreses, and the isoelectric point was estimated to be 4.96 by analytical isoelectric focusing. The temperature optimum for activity was about $55^{\circ}C$, and the pH optimumwas 3.5. The enzyme was considerably thermostable, for no loss of activity was observed when the enzyme was preincubated at $60^{\circ}C$ for 5h. Km values for cellobiose, gentiobiose, sophorose, salicin and $p-nitrophenyl-{\betha}-D-glucoside$ were 99.2, 14.7, 7.09, 3.15 and 0.70 mM, respectively, which indicates that the enzyme has much higher affinity towards $p-nitrophenyl-{\betha}-D-glucoside$ than towards the other substrates, especially cellobiose. Substrate inhibition by $p-nitrophenyl-{\betha}-D-glucoside$ and salicin was observed at the conecntrations exceeding 5mM. Gluconolactone was a powerful inhibitor against the action of the enzyme on $p-nitrophenyl-{\betha}-D-glucoside\;(K_i\;37.9\;{\mu}M)$, wherease glucose was much less effective ($K_i$ 1.95 mM). Inhibition was of the competitive type in each case. Transglucosylation activity was detected shen the readtion products formed from $p-nitrophenyl-{\betha}-D-glucoside$ by the enzyme were analysed using high-performance liquid chromatography.

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Production of Flavonoid Compounds and Anti-inflammatory Property of Fermented Licorice Extract with the Basidiomycete Grifola frondosa HB0071 (잎새버섯 균사체를 이용한 감초추출발효물의 플라보노이드 생성과 항염 활성 연구)

  • Bae, Jun Tae;Song, Min Hyeon;Kim, Jin Hwa;Lee, Geun Soo;Pyo, Hyeong Bae
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.38 no.4
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    • pp.327-338
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    • 2012
  • Liquiritigenin and isoliquiritigenin are the major flavonoids present in licorice. These flavonoid compounds were prepared by submerged culture of Grifola frondosa (G. frondosa) HB0071 mycelia producing ${\beta}$-glucosidase in the aqueous extract of licorice. The contents of liquiritigenin and isoliquiritigenin were increased during the fermentation. This fungus produced a high ${\beta}$-glucosidase (activity of 91.5 mU/mL), thereby achieving high amounts of liquiritigenin and isoliquiritigenin ($568.5{\mu}g/mL$ and $89.6{\mu}g/mL$), respectively at 96 h. A reversed- phase high-performance liquid chromatography method was established for simultaneous determination of liquiritigenin and isoliquiritigenin in fermented licorice extract (FLEx). The anti-inflammatory activities were investigated by licorice extract (LEx) before and after fermentation with G. frondosa HB0071. The treatment of UVB-irradiated HaCaT keratinocytes with FLEx resulted in a dose-dependent decrease in the expression level of cyclooxygenase-2 (COX-2) mRNA. Furthermore, FLEx dose-dependently decreased mRNA of the pro-inflammatory cytokines of IL-$1{\beta}$ and IL-6 in UVB-irradiated HaCaT cells. These results suggest that FLEx may mitigate the effects of skin inflammation by reducing UVB-induced adverse skin reactions.

감귤류 변패의 원인균인 Penicillium sp.-L4가 생성하는 식물세포벽 분해효소의 작용양상

  • 김무성;최영길
    • Microbiology and Biotechnology Letters
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    • v.25 no.2
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    • pp.115-120
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    • 1997
  • Penicillium sp.-L4, a causative fungus of rot in citrus fruits, was isolated and its mode of hydrolytic enzyme production was investigated. Carboxymethylcellulase (CMCase), polygalacturonase(PGase), extra- & intra-cellular $\beta$-glucosidase and cellobiase were produced drastically by addition of substrates in minimal media. Production of the hydrolytic enzymes were induced efficiently by cellobiose and cellooligosaccharides which were the products of cellulose hydrolysis, but repressed by addition of mono-saccharide such as glucose, raffinose, galacturonic acid. The relative activity of p-nitrophenyl-$\beta$-D-glucopyranoside(PNPG) hydrolysis was higher than that of cellobiose hydrolysis in extracellular enzymes, and reverse is true in intracellular enzymes. Intact enzyme production of P. sp.-L4 on lemon peel lesion was sequential. $\beta$-Glucosidase and CMCase were produced first and followed by PGase. The enzyme productivities and pH in lesions were coincident with optimal pH of each enzyme activities.

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Cloning and Identification of Essential Residues for Thermostable β-glucosidase (BgIB) from Thermotoga maritima (Thermotoga maritima로부터 고온성 β-glucosidase (BgIB)의 클로닝과 필수아미노산 잔기의 확인)

  • Hong, Su-Young;Cho, Kye-Man;Kim, Yong-Hee;Hong, Sun-Joo;Cho, Soo-Jeong;Cho, Yong-Un;Kim, Hoon;Yun, Han-Dae
    • Journal of Life Science
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    • v.16 no.7 s.80
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    • pp.1148-1157
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    • 2006
  • A hyperthermophilic bacterium Thernotoga maritima produced thermostable ${\beta}-glucosidase$. The gene encoding ${\beta}-glucosidase$ from T. maritima MSB8 was cloned and expressed in Escherichia coli. The en-zyme (BgIB) hydrolyzed ${\beta}-glucosidase$ linkages between glucose and alkyl, aryl of saccharide groups such as salicin, arbutin, and $_pNPG$. The insert DNA contained ORF with 2,166 bp encodes a 721 amino acids (calculated molecular mass of 80,964 and pl of 4.93). The amino a.id sequence of BglB showed the similarity to family 3 glycosyl hydrolases. The molecular weight of the enzyme was estimated to be approximately 81kDa by MUG-nondenaturing PAGE (4-methylumbelliferyl 13-D-glucoside-nondenaturing polyacrylamide gel electophoresis) and SDS-PACE. The ${\beta}-glucosidase$ exhibited maximal activity at pH 7.0 and $80^{\circ}C$. By exchanging two possible residues (Glu-232 and Asp-242) to Ala by site-directed mutagenesis method, it was found that these were essential for enzymatic activity.

Purification and Characterization of Beta-Glucosidase from Weissella cibaria 37

  • Lee, Kang Wook;Han, Nam Soo;Kim, Jeong Hwan
    • Journal of Microbiology and Biotechnology
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    • v.22 no.12
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    • pp.1705-1713
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    • 2012
  • A gene encoding ${\beta}$-glucosidase was cloned from Weissella cibaria 37, an isolate from human feces. Sequence analysis showed that the gene could encode a protein of 415 amino acids in length, and the translated amino acid sequence showed homology (34-31%) with glycosyl hydrolase family 1 ${\beta}$-glucosidases. The gene was overexpressed in E. coli BL21(DE3) using pET26b(+) and a 50 kDa protein was overproduced, which matched well with the calculated size of the enzyme, 49,950.87 Da. Recombinant ${\beta}$-glucosidase was purified by using a his-tag affinity column. The purified ${\beta}$-glucosidase had an optimum pH and a temperature of 5.5 and $45^{\circ}C$, respectively. Among the metal ions (5mM concentration), $Ca^{2+}$ slightly increased the activity (108.2%) whereas $Cu^{2+}$ (46.1%) and $Zn^{2+}$ (56.7%) reduced the activity. Among the enzyme inhibitors (1 mM concentration), SDS was the strongest inhibitor (16.9%), followed by pepstatin A (45.2%). The $K_m$ and $V_{max}$ values of purified enzyme were 4.04 mM and 0.92 ${\mu}mol/min$, respectively, when assayed using pNPG (p-nitrophenyl-${\beta}$-D-glucopyranoside) as the substrate. The enzyme liberated reducing sugars from carboxymethyl cellulose (CMC).

$\alpha$-D-Glucosidase Inhibitor from Streptomyces Sp. (III) - Purification and Stability of the Inhibitor - (Streptomyces속 균주가 생성하는 $\alpha$-D-Glucosidase Inhibitor(III) -저해물질의 정제 및 안정성-)

  • 도재호;주현규
    • Microbiology and Biotechnology Letters
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    • v.17 no.5
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    • pp.529-532
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    • 1989
  • A strain of Streptomyces sp. (YS-221-B) extracellularly produced an inhibitory substance for $\alpha$-D-Glucosidase. The substance was purified 96-fold from culture filtrate by dialysis, heat treatment, adsorption on active carbon, Bio-Gel P-10 and Sephadex G-75 column chromatography with yield of 9.2%. The substance was stable in pH range from 7.0 to 11.0 at 37$^{\circ}C$, and a treatment at 10$0^{\circ}C$ for 20 min diminished only 15% of the original activity. The inhibitor was not inactivated by the treatment of $\alpha$-, $\beta$-amylases, glucoamylases, trypsin and chymotrypsin but inactivated by pyoteases from Streptomyces griseus and Tritirachium album.

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Penicillium sp.-L4의 균성장 및 효소작용을 억제하는 $\beta$-glucosidase inhibitor의 분리 및 특성

  • Kim, Moo-Sung;Ha, Sung-Yoon;Jeon, Gi-Boong;Lim, Dal-Taek;Park, Byung-Hwa;Lee, Bo-Seop;Lee, Sang-Rin;Choi, Yong-Keel
    • Microbiology and Biotechnology Letters
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    • v.25 no.2
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    • pp.189-196
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    • 1997
  • A producer of inhibitor against ${\beta}-glucosidase$ of Penicillium sp.-L4 was screened from Actinomycetes, and the isolated strain was identified as Streptomyces sp. The inhibitor produced was very stable against heat, acidic and alkaline conditions, proteolytic and amylolytic enzymes. The inhibotor was purified from culture broth through activated carbon treatment, ultrafiltration, anion and cation exchange, activated carbon columm, acetone precipitation and preparative HPLC. It showed inhibitory activities against a variety of dissacharide hydrolyzing enzymes produced by P.sp.-L4, and the mode of inhibition was competitive. Its structure and molecular formular was elucidated by IR, $^1H\;and\;^{13}C$ NMR and FAB/Mass spectrometry, which was identified as 1-deoxynojirimycin (dNM). dNM showed inhibitory effects on the cell growth and hydrolytic enzyme action of P.sp.-L4 on agar plate and infected lemon peel.

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Bioconversion of Ginsenoside Rb1 to the Pharmaceutical Ginsenoside Compound K using Aspergillus usamii KCTC 6954 (Aspergillus usamii KCTC 6954에 의한 ginsenoside Rb1로 부터 의약용 소재인 compound K로의 생물학적 전환)

  • Jo, Mi Na;Jung, Ji En;Yoon, Hyun Joo;Chang, Kyung Hoon;Jee, Hee Sook;Kim, Kee-Tae;Paik, Hyun-Dong
    • Microbiology and Biotechnology Letters
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    • v.42 no.4
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    • pp.347-353
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    • 2014
  • ${\beta}$-Glucosidase from Aspergillus usamii KCTC 6954 was used to convert ginsenoside Rb1 to compound K, which has a high bio-functional activity. The enzymatic activities during culturing for 15 days were determined using ${\rho}$-nitrophenyl-${\beta}$-glucopyranoside. The growth rate of the strain and the enzymatic activity were maximized after 6 days (IU; $175.93{\mu}M\;ml^{-1}\;min^{-1}$). The activities were maximized at $60^{\circ}C$ in pH 6.0. During culturing, Rb1 was converted to Rd after 9 d and then finally converted to compound K at 15 d. In the enzymatic reaction, Rb1 was converted to the ginsenoside Rd within 1 h of reaction time and compound K could be detected after 8 h. As a result, this study demonstrates that $Rb1{\rightarrow}Rd{\rightarrow}F2{\rightarrow}$compound K is the main metabolic pathway catalyzed by ${\beta}$-glucosidase and that ${\beta}$-glucosidase is a feasible option for the development of specific bioconversion processes to obtain minor ginsenosides such as Rd and compound K.