• 제목/요약/키워드: sterol glucoside

검색결과 29건 처리시간 0.022초

Phytochemical Study on Prunus davidiana

  • Choi, Jae-Sue;Woo, Won-Sick;Young, Han-Suk;Park, Jong-Hee
    • Archives of Pharmacal Research
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    • 제13권4호
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    • pp.374-378
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    • 1990
  • From the stem of Prunus davidiana, naringenin and its glucoside, kaempferol and its glucoside, dihydrokaempferol, kaempferide glucoside, hesperetin glucoside, quercetin glucoside, d-catechin and $\beta$-sitosterol glucoside were isolated.

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Biochemical Characterization of Recombinant UDP-Glucose:Sterol 3-O-Glycosyltransferase from Micromonospora rhodorangea ATCC 31603 and Enzymatic Biosynthesis of Sterol-3-O-β-Glucosides

  • Hoang, Nguyen Huu;Hong, Sung-Yong;Huong, Nguyen Lan;Park, Je Won
    • Journal of Microbiology and Biotechnology
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    • 제26권3호
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    • pp.477-482
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    • 2016
  • A uridine diphosphate-glucose:sterol glycosyltransferase-encoding gene was isolated and cloned from the established fosmid library of Micromonospora rhodorangea ATCC 27932 that usually produces the aminoglycoside antibiotic geneticin. The gene consists of 1,185 base pairs and encodes a 41.4 kDa protein, which was heterologously expressed in Escherichia coli BL21(DE3). In silico analyses of the deduced gene product suggested that it is a member of the family 1 glycosyltransferases. The recombinant protein MrSGT was able to catalyze the transfer of a glucosyl moiety onto the C-3 hydroxy function in sterols (β-sitosterol, campesterol, and cholesterol), resulting in the corresponding steryl glucosides (β-sitosterol-3-O-β-ᴅ-glucoside, campesterol-3-O-β-ᴅ-glucoside, and cholesterol-3-O-β-ᴅ-glucoside). This enzyme prefers phytosterols to cholesterol, and also shows substrate flexibility to some extent, in that it could recognize a number of acceptor substrates.

참느릅나무의 성분에 관한 연구 (Studies on the Constituents of Ulmus parvifolia)

  • 문영희;임기룡
    • 생약학회지
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    • 제26권1호
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    • pp.1-7
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    • 1995
  • The bark of Ulmus parvifolia Jacq. (Ulmaceae) has been used for the treatment of gonorhea, edema, scabies and eczema marginatum. Previous investigations conducted with the heartwood and leaves have demonstrated it to contain sesquiterpenes as well as fat acids from the heartwood and flavonol glycosides from leaves. However, no phytochemical work has been done on the bark parts of this plant. Investigation of the phytochemical constituents in the barks of U. parvifolia has resulted in the isolation of sterols, sterol glucoside and a catechin glycoside, $(+)-catechin\;7-O-{\alpha}-{_L}-rhamnopyranoside$, all of which were isolated for the first time from this plant. Sterols were consisted of the three components, ${\beta}-sitosterol$, stigmasterol and campesterol in a ratio of 92.1:4.1:3.8, and sterol glucoside was identified as ${\beta}-sitosterol\;3-O-{\beta}-{_D}-glucoside$. The structure of the catechin $7-O-{\alpha}-{_L}-rhamnoside$ was established primarily by analysis of $^1H-and$ COSY-45 NMR, HMQC and HMBC and EI mass spectra of the heptaacetate. Especially, HMBC spectrum provides effective way for the determination of the point of attachment of the rhamnosyl group to catechin moiety.

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얼레지 인경의 성분에 관한 연구 (Studies on the Chemical Components from Erythronium japonicum)

  • 문영희;김영희
    • 생약학회지
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    • 제23권2호
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    • pp.115-116
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    • 1992
  • From the bulbs of Erythronium japonicum Decaisne(Liliaceae), ${\beta}-sitosterol$ and its $3-O-{\beta}-D-glucoside$ together with fatty acids were isolated. All compounds were identified on the basis of spectral data. Campesterol and stigmasterol were also identified as minor components. Paimitic acid was identified as a major component and stearic, oleic, arachidic, behenic, tricosanoic and lignoceric acids were also characterized as minor ones.

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Chemical Constituents of Gomphrena globosa. II

  • Dinda, Biswanath;Ghosh, Biplab;Achari, Basudev;Arima, Shiho;Sato, Nariko;Harigaya, Yoshihiro
    • Natural Product Sciences
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    • 제12권2호
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    • pp.89-93
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    • 2006
  • One new sterol glucoside, $gomphsterol\;{\beta}-D-glucoside$ 1 along with known compounds, ${\beta}-sitosterol$, stigmasterol, campesterol, $stigmasterol-{\beta}-D-glucoside$, friedelin, 3-epi-friedelinol, allantoin, and $chrysoeriol-7-O-{\beta}-D-glucoside$ have been isolated from the aerial parts of Gomphrena globosa (Amaranthaceae). On the basis of spectroscopic (including 2D NMR) and chemical studies, the structure of 1 was elucidated as $(22E,24S)-24-ethylcholesta-7,9(11),22-trien-3{\beta}-ol-3-O-{\beta}-D-glucopyranoside$. Known compounds are reported for the first time from this plant species.

인삼근의 지질 분포 (Distribution of Lipids in Panax ginseng Root)

  • 김우갑;이창섭;정병갑
    • Journal of Ginseng Research
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    • 제12권2호
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    • pp.93-103
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    • 1988
  • 인삼근의 구조적인 차이점에 따른 지질의 함량 및 지방질 조성을 규명하기 위하여 chloroform-methanol로 추출한 지질을 column, thin layer, gas-liquid chromatography에 의하여 분석하였다. 각 부위별 정제 지질은 1.08~2.23%로서 그 조성면에서 볼 때 중성지질은 64.2~73.5%였고 당지질은 15.4~17.4%였으며 인지질은 10.4~19.2%였다. 특히 피층에서는 중성지질의 함량이 가장 높았는데 이는 이곳에만 특징적으로 존재하는 지질분비관에서 합성 분비된 중성지질 때문이라 생각된다. 이러한 점은 조직화학적 관찰 결과 분비관 내강의 분비물질이 nile blue에 적색의 반응을 나타내는 것으로 더욱더 뒷바침 될 수 있었다. 중성지질 획분중에는 triglycerides, sterol esters and hydrocarbons 의 함량이 높았고 그외에 1,3-diglycerides, monoglycerides, 1,2-diglycerides, free sterols, free fatty acids와 미동정된 5종류가 검출되었다. 그러나 중심주에서는 unidentified II, IV 및 V가 검출되지 않은 점이 특이하였다. 당지질 획분 중에는 sterol glucoside, digalactosyl diglyceride 및 esterified sterol glucoside가 주성분이었고 미동정된 6종류가 검출되었다. 인지질 획분 중에는 phospatidyl glycerol, phosphatidyl choline과 phosphatidyl ethanolamine이 주성분이었고 그 외에 phosphatidic acid, phosphatidyl inositol 및 미동정된 2종이 검출되었다. 각 부위별 중성지질, 당지질, 인지질 획분 중에서 모두 18종류의 지방산이 동정되었는데 주요지방산은 linoleic acid, palmitic acid, oleic acid 및 linolenic acid였으나 각 지방산의 함량은 부위별 및 지질분획에 따라서 다소 상이하였다.

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만삼의 Sterol 및 Steryl glycoside에 관한연구 (Sterols and Steryl glycosides from the Root of Codonopsis pilosula)

  • 이인란;김영희;박성배
    • 생약학회지
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    • 제13권3호
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    • pp.129-131
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    • 1982
  • From the roots of Codonopsis pilosula (Franch.) Nannfeldt (Campanulaceae), ${\alpha}$-spinasterol, mp $165{\sim}7^{\circ}$ and alpha-spinasteryl D-glucoside, mp $283{\sim}5^{\circ}$, were isolated and identified on the basis of chemical and spectral data. Spectral data showed that $\Delta^7-stigmasterol$ and its glucoside were contained as minor components.

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물레나물로부터 Steroid 및 Flavonoid 성분의 분리 (Isolation of Steroids and Flavonoids from the Herbs of Hypericum ascyron L.)

  • 권상혁;윤세영;이경태;박희준
    • 생약학회지
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    • 제31권1호
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    • pp.39-44
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    • 2000
  • A sterol mixture, 3-O-glucosides of these sterols, 6'-O-fattyacyl ester of these sterol glucosides, kaempferol, quercetin and isoquercitrin were isolated from the whole plants of Hypericum ascyron L. The sterols were found to be a mixture of ${\beta}-sitosterol$, campesterol and stigmasterol by GC-MS. The kinds of fatty acids linked at 6'-OH of sterol glucoside ester mixture were shown to be palmitic acid, stearic acid, oleic acid and linoleic acid by GC-MS. Three flavonoids were identified by spectroscopic methods and comparisons of mixed mp and co-TLC with authentic specimens.

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Phytochemical Constituents of Urtica angustifolia Fisch

  • Kwon, Hak-Cheol;Kwak, Jong-Hwan;Lee, Kang-Ro;Zee, Ok-Pyo;Yu, Seung-Jo
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1996년도 춘계학술대회
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    • pp.168-168
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    • 1996
  • 가는잎쇄기풀(Urtica angustifolia Fisch.)은 쇄기풀과(Urticaceae)에 속하는 다년생 초본으로 중약 또는 민간에서 동속 근연식물과 함께 전초를 담마라하여 류마치스성 동통, 산후의 산풍, 소아의 추풍, 경풍,담마진의 치료에 사용되고 있다. Rat에서 실험적 항당뇨 효과를 검토해본 결과 혈당강하 작용이 있는 본 식물로부터 그 혈당강하 성분의 분리에 앞서 식물화학 성분을 규명하고자 본 실험에 착수하였다. 가는잎쇄기풀 전초의 MeOH ex.를 CH$_2$Cl$_2$, EtOAc, n-BuOT 및 $H_2O$로 분획하고 각종 column chromatography를 통하여 다수의 화합물을 분리하였다. 각 화합물은 이화학적 성상 및 spectral data로부터 scopoletin, esculetin dimethyl ether(scoparone), sterol mixture, $\beta$-sitosteryl-3-o-glucoside, kaempferol-3-o-glucoside, quercetin-3-o-glucoside, kaempferol-3-o-rutinoside로 확인하였으며 그 외 다수의 화합물은 그 구조를 규명중이다.

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각국 인삼의 지방질성분에 관한 연구 제1보, 유리 지방질중의 지방질 및 지방산 조성 (Studies on the Lipid Components of Various Ginsengs 1. lipid and Fatty Acid Compositions of the Free Lipids)

  • 최강주;김만욱;김동훈
    • Journal of Ginseng Research
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    • 제9권2호
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    • pp.193-203
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    • 1985
  • Lipid and fatty acid compositions of the free lipids in Panax ginseng (Korea, Japan and China), Panax quinquefolium (America, Canada) and Panax notoginseng (China) were studied by means of silicic acid column chromatography, thin-layer chromatography and gas-liquid chromatography. Free lipid contents were 1.13 to 1.24% in panax ginseng and 0.87 to 1.18% in Panax quinquefolium and 0.39% in panax notoginseng. Neutral lipid fractions were 81.2 to 84.4%, while glycolipid fractions 8.01% to 14.47% and phospholipid fractions 3.49 to 5.74% in free lipid contents. The major components were triglycerides, free sterols, diglyceride, free fatty acids and sterol esters in neutral lipid fractions, sterol glucoside, monogalactosyl diglyceride, digalactosyl diglyceride, esterified steryl glucoside in glycolipid fractions and phosphatidyl glycerol, phosphatide, ethanolamine, phosphatidyl choline in phospholipid fractions. The contents and compositions of neutral lipids and glyclipids were some different among various ginsengs, whereas phospholipids showed relatively similar compositions in the contents. Seventeen fatty acids were analyzed in the four free lipid fractions from the various ginsengs and the main fatty acids were linoleic acid, palmitic acid, oleic acid and linolenic acid. It was found that the amounts of some fatty acids were different among the various ginsengs, but the fatty acid patterns of these ginsengs were on the whole similar.

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