• Title/Summary/Keyword: genistein 7-O-glucoside

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Glucosylation of Isoflavonoids in Engineered Escherichia coli

  • Pandey, Ramesh Prasad;Parajuli, Prakash;Koirala, Niranjan;Lee, Joo Ho;Park, Yong Il;Sohng, Jae Kyung
    • Molecules and Cells
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    • v.37 no.2
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    • pp.172-177
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    • 2014
  • A glycosyltransferase, YjiC, from Bacillus licheniformis has been used for the modification of the commercially available isoflavonoids genistein, daidzein, biochanin A and formononetin. The in vitro glycosylation reaction, using UDP-${\alpha}$-D-glucose as a donor for the glucose moiety and aforementioned four acceptor molecules, showed the prominent glycosylation at 4' and 7 hydroxyl groups, but not at the $5^{th}$ hydroxyl group of the A-ring, resulting in the production of genistein 4'-O-${\beta}$-D-glucoside, genistein 7-O-${\beta}$-D-glucoside (genistin), genistein 4',7-O-${\beta}$-D-diglucoside, biochanin A-7-O-${\beta}$-D-glucoside (sissotrin), daidzein 4'-O-${\beta}$-D-glucoside, daidzein 7-O-${\beta}$-D-glucoside (daidzin), daidzein 4', 7-O-${\beta}$-D-diglucoside, and formononetin 7-O-${\beta}$-D-glucoside (ononin). The structures of all the products were elucidated using high performance liquid chromatography-photo diode array and high resolution quadrupole time-of-flight electrospray ionization mass spectrometry (HR QTOF-ESI/MS) analysis, and were compared with commercially available standard compounds. Significantly higher bioconversion rates of all four isoflavonoids was observed in both in vitro as well as in vivo bioconversion reactions. The in vivo fermentation of the isoflavonoids by applying engineered E. coli $BL21(DE3)/{\Delta}pgi{\Delta}zwf{\Delta}ushA$ overexpressing phosphoglucomutase (pgm) and glucose 1-phosphate uridyltransferase (galU), along with YjiC, found more than 60% average conversion of $200{\mu}M$ of supplemented isoflavonoids, without any additional UDP-${\alpha}$-D-glucose added in fermentation medium, which could be very beneficial to large scale industrial production of isoflavonoid glucosides.

Flavonoids from the Flower of Clerodendrum trichotomum (누리장나무 꽃의 Flavonoid 성분)

  • Lee, Jong-Wook;Kang, Se Chan;Bae, Jong Jin;Lee, Kyung Bok;Kwak, Jong Hwan
    • Korean Journal of Pharmacognosy
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    • v.46 no.4
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    • pp.289-294
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    • 2015
  • Seven flavonoids were isolated from the flower of Clerodendrum trichotomum. Their structures were identified as apigenin (1), genistein (2), chrysoeriol (3), genistein 7-O-glucoside (4), kaempferol 3-O-glucoside (5), isorhamnetin 3-O-glucoside (6) and apigenin 7-O-glucoside (7) on the basis of spectral data. These compounds were isolated from C. trichotomum for the first time. The antioxidant activity of compounds 1-7 were evaluated by the ORAC (oxygen radical absorbance capacity) assay, and the ORAC values were expressed as relative trolox equivalent. All isolated compounds exhibited antioxidant activity.

Flavonoids from the Leaves of Glycine max Showing Anti-lipid Peroxidative Effect

  • Hur, Jong-Moon;Park, Sung-Jong;Park, Ju-Gwon;Hwang, Young-Hee;Park, Jong-Cheol;Yokozawa, Takako;Kim, Moon-Sung
    • Natural Product Sciences
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    • v.7 no.2
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    • pp.49-52
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    • 2001
  • Anti-lipid peroxidative activity and phytochemical study on the leaves of Glycine max Meer. were investigated. The methanol extract of the leaves of G. max reduced the level of lipid peroxides induced by bromobenzene in vitro. From the leaves of this plant, apigenin, genistein $7-O-{\beta}-D-glucopyranoside$, kaempferol $3-O-{\beta}-D-glucopyranoside$, and kaempferol 3-O-sophoroside were isolated and characterized by spectral data.

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Characterization of Isoflavones from Seed of Selected Soybean (Glycine max L.) Resources Using High-Resolution Mass Spectrometry (고해상도 질량 분석을 이용한 대두(Glycine max L.) 우수자원 종자의 이소플라본 특성 평가)

  • Lee, So-Jeong;Kim, Heon-Woong;Lee, Suji;Na, Hyemin;Kwon, Ryeong Ha;Kim, Ju Hyung;Yoon, Hyemyeong;Choi, Yu-Mi;Wee, Chi-Do;Yoo, Seon Mi;Lee, Sang Hoon
    • The Korean Journal of Food And Nutrition
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    • v.33 no.6
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    • pp.655-665
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    • 2020
  • In this study, chemical information on a total of 20 individual compounds was constructed to identify isoflavones from the previous reports related with used parts(seeds, leaves, stems, pods) and products of soybean(Glycine max L.). Through constructed library and UPLC-DAD-QToF/MS analysis, a total of 19 individual isoflavones including aglycones, glucosides, acetylglucosides and malonylglucosides as major compounds was identified and quantified from 14 selected soybean seeds. Among them, genistein 7-O-(2"-O-apiosyl)glucoside and genistein 7-O-(6"-O-apiosyl)glucoside(ambocin) were identified tentatively as novel compounds in soybean seeds. Besides, among malonylglucosides, glycitein 4'-O-(6"-O-malonyl)glucoside was estimated for the first time. Total isoflavone contents were distributed from 240.21 to 445.21(mg/100 g, dry matter) and 7-O-6"-O-malonylglucosides were composed of 77.8% on total isoflavone as well as genistein derivatives were confirmed as major class. It was considered importantly that the development of isoflavone-rich varieties was necessary to strengthen their effects such as anti-inflammation, anti-cancer and menopause mitigation. The qualitative and quantitative data presented precisely in this study could be help to select and breed isoflavone-rich varieties. Furthermore, their basic isoflavone profile is expected to be applied to estimate the change of isoflavone conjugates on bioavailability after soy food supplements.

Formation of Flavone Di-O-Glucosides Using a Glycosyltransferase from Bacillus cereus

  • Ahn, Byoung-Chan;Kim, Bong-Gyu;Jeon, Young-Min;Lee, Eun-Jeong;Lim, Yoong-Ho;Ahn, Joong-Hoon
    • Journal of Microbiology and Biotechnology
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    • v.19 no.4
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    • pp.387-390
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    • 2009
  • Microbial UDP-glycosyltransferases can convert many small lipophilic compounds into glycons using uridine-diphosphate-activated sugars. The glycosylation of flavonoids affects solubility, stability, and bioavailability. The gene encoding the UDP-glycosyltransferase from Bacillus cereus, BcGT-3, was cloned by PCR and sequenced. BcGT-3 was expressed in Escherichia coli BL21(DE3) with a glutathione S-transferase tag and purified using a glutathione S-transferase affinity column. BcGT-3 was tested for activity on several substrates including genistein, kaempferol, luteolin, naringenin, and quercetin. Flavonols were the best substrates for BcGT-3. The enzyme dominantly glycosylated the 3-hydroxyl group, but the 7-hydroxyl group was glycosylated when the 3-hydroxyl group was not available. The kaempferol reaction products were identified as kaempferol-3-O-glucoside and kaempferol-3,7-O-diglucoside. Kaempferol was the most effective substrate tested. Based on HPLC, LC/MS, and NMR analyses of the reaction products, we conclude that BcGT-3 can be used for the synthesis of kaempferol 3,7-O-diglucose.

Chemical Components from the Stems of Pueraria lobata and Their Tyrosinase Inhibitory Activity

  • Morgan, Abubaker M.A.;Jeon, Mi Ni;Jeong, Min Hye;Yang, Seo Young;Kim, Young Ho
    • Natural Product Sciences
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    • v.22 no.2
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    • pp.111-116
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    • 2016
  • Phytochemical investigation of the stems of Pueraria lobata (Wild) Ohwi (Leguminosae), led to the isolation of eighteen known compounds: ${\beta}$-amyrone (1), (+)-pinoresinol (2), (+)-syringaresinol (3) $(+)-syringaresinol-O-{\beta}-{\small{D}}-glucoside$ (4), (+)-lariciresinol (5), (-)-tuberosin (6), naringenin (7), liquiritigenin (8), isoliquiritigenin (9) genistein (10), daidzein (11) daidzin (12) daidzein 4',7-diglucoside (13) 2,4,4'-trihydroxy deoxybenzoin (14), S-(+)-1-hydroxy-3-(4-hydroxyphenyl)-1-(4-hydroxy-2-methoxy-phenyl)propan-2-one (15), methyl $2-O-{\beta}-{\small{D}}-glucopyranosylbenzoate$ (16), pyromeconic acid $3-O-{\beta}-{\small{D}}-glucopyranoside$ 6'- (O-4''-hydroxy-3-methoxybenzoate) (17), and allantion (18). The chemical structures of these compounds were elucidated from spectroscopic data and by comparison of those data with previously published results. The effects of isolated compounds on mushroom tyrosinase enzymatic activity were screened. The results indicated that, chloroform extract of P. lobata stems turned out to be having tyrosinase inhibitory effect, and only compounds 5, 8, 9, and 11 showed enzyme inhibitory activity, with $IC_{50}$ values of $21.49{\pm}4.44$, $25.24{\pm}6.79$, $4.85{\pm}2.29$, and $17.50{\pm}1.29{\mu}M$, respectively, in comparison with these of positive control, kojic acid ($IC_{50}\;12.28{\pm}2.72{\mu}M$). The results suggest that P. lobata stems extract as well as its chemical components may represent as potential candidates for tyrosinase inhibitors.

Metabolizing analysis according to the sawdust media of the known anticancer trees by Pleurotus ostreatuss (느타리버섯의 항암수목자원 배지속 함유성분의 분해능 평가)

  • Shin, Yu-Su;Yang, Bo-Hyun;Kang, Bo-Yeon;Kim, Hyun-Soo;Lee, Ji-Hyun;Hong, Yoon-Pyo;Lee, Sang-Won;Lee, Chan-Jung;Kim, Seung-Yoo
    • Journal of Mushroom
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    • v.9 no.4
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    • pp.186-189
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    • 2011
  • The transitivity of Chemical constituents by Pleurotus ostreatus cultivated in different raw sawdusts, which are Juglans mandchurica, Cudrania tricuspidata and Lindera glauca, was investigated. The HPLC chromatography patterns on the chemical constituents of P. ostreatus showed the similar chromatography patterns in all different raw sawdusts and control sawdust. The unknown chemical constituents of P. ostreatus cultivated in the 10%, 20% mixed medium added 10 %, 20% different raw sawdusts, respectively, were increased. But the significance results in the mixed medium added 50% different raw sawdusts were not showed. The chromatography patterns of mycelia grown in media added the 80% MeOH extracts of three tree species showed the similar patterns in comparison with control mycelia. In the results, the secondary metabolites of functional media were not degrade and changed to other derivatives compounds by P. ostreatus.