• Title/Summary/Keyword: glucose conjugates

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Identification of Water Soluble Metabolites of Pentachlorophenol(PCP) in the Suspension Cultures of Soybean and Rice Cells;2. Isolation and characterization of PCP glucose conjugates (콩과 벼 현탁배양시(懸濁培養時) PCP 수용성대사물(水溶性代謝物)의 동정(同定);2. PCP glucose conjugates의 분리(分離) 및 분석(分析))

  • Kim, Pil-Je;Park, Chang-Kyu
    • Korean Journal of Environmental Agriculture
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    • v.15 no.1
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    • pp.37-45
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    • 1996
  • Abstracts From the previous metabolic study of Pentachlorophenol(PCP), PCP was found to be exclusively transformed into ${\beta}-glucose$ conjugates of PCP in soybean and rice cell suspension cultures. In order to gather structural information of of the glucose conjugate, their aglycons and glycon have been analyzed by GC and GC/MS respectively, after thorough purification by chromatographic techniques. The glucose conjugates were effectively purified through a 1-butanol extraction followed by Silica gel TLC, Sephadex column chromatography and HPLC. Aglycons of the metabolites were identified as PCP, isomeric mixture of tetrachlorophenol, and tetrachlorocatechol and glycon were identified as glucose, suggesting that there are at least three kinds of glucose conjugates with different phenolic moieties. Under controlled conditions, the glucose conjugates were separated into three HPLC peaks which released respective aglycon upon a hydrolytic treatment. These results give valuable information on the structure of the glucose conjugates such that some PCP-driven chlorophenols, in addition to PCP, are also conjugated with glucose.

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Identification of Water Soluble Metabolites of Pentachlorophenol ( PCP ) in the Suspension Cultures of Soybean and Rice Cells;1. Metabolic Conversion of PCP to Glucose conjugates (대두(大豆) 및 벼 현탁배양(懸濁培養) 중 PCP 수용성대사물(水溶性代謝物)의 동정(同定);1. PCP glucose conjugates의 형성)

  • Kim, Pil-Je;Park, Chang-Kyu
    • Korean Journal of Environmental Agriculture
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    • v.11 no.3
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    • pp.215-223
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    • 1992
  • A metabolic study has been conducted to investigate the conversion of pentachlorophenol(PCP) to water soluble metabolites in soybean and rice cell suspension cultures as well as in intact rice plants. PCP in plant cells was found to be exclusively transformed into water soluble metabolites. The relative rate of the metabolic conversion of PCP in decreasing order was soybean cultures > rice cultures > rice plants. Also observed was that, the older the cultures grown, the lower the conversion rate was. Primary water soluble metabolites isolated from both the 5 day old soybean and 8 day old rice cells were specifically hydrolyzed only by ${\beta}$-glucosidic linkage specific glucosidase, suggesting that the metabolites are ${\beta}$-glucose conjugates. The amount of glucose conjugates was increased with increasing time of incubation of PCP up to 24 hr in both soybean and rice cultures; Thereafter, it was decreased progressively. Most of the glucose conjugates were further metabolized to more polar conjugates in cells, but a portion of them was excreted into the culture medium.

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Identification of Water Soluble Metabolites of Pentachlorophenol(PCP) in the Suspension Cultures of Soybean and Rice Cells;3. Identification of PCP Glucose conjugates (콩과 벼 현탁배양(懸濁培養) 중 PCP 수용성대사물(水溶性代謝物)의 동정(同定);3. PCP glucose conjugates의 동정(同定))

  • Kim, Pil-Je;Park, Chang-Kyu
    • Korean Journal of Environmental Agriculture
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    • v.15 no.2
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    • pp.167-178
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    • 1996
  • In order to identify PCP glucose conjugates transformed from PCP in soybean and rice cell suspension cultures, the purified metabolites were acetylated, purified twice by HPLC using a normal and a reversed phase column, and then subjected to fast atom bombardment(FAB) mass spectrometric analysis. As were the conjugates, their acetylated derivatives of the glucose conjugates formed at the early stage(48 hr) of metabolism were separated by HPLC into three fractions. FABMS analysis of each fraction revealed that, at least in two fractions, the locations of the spectral peaks were practically coincident with those deducible from the structures of pentachlorophenyl and tetrachlorophenyl ${\beta}-D-glucopyranosides$. Based on information obtained from mass spectral and chromatographic analysis of not only the water-soluble metabolites but also aglycones and glycone, it is concluded that PCP is primarily metabolized to glucose conjugates, which account for more than 50% recovery of the PCP-conveyed radioactivity from the water soluble metabolites : The conjugates are mainly made up of pentachlorophenyl ${\beta}-D-glucopyranoside$, tetrachlorophenyl ${\beta}-D-glucopyranosides$( probably 2 or more isomers), and 2-hydroxy-3,4,5,6-tetrachlorophenyl ${\beta}-D-glucopyranoside$.

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Preparation and Stability Measurement of Liposome-amino Acid Conjugates (리포솜-아미노산 결합체의 제조와 안정성 측정)

  • 문제영;이기영;김진철
    • KSBB Journal
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    • v.15 no.1
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    • pp.96-99
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    • 2000
  • Liposome-amino acid conjugates were prepared using phopholipid (dipalmitoylphosphatidylcholine (DPPC) or distearoylph-osphatidylcholine(DSPC)) and hydrophobically modified amino acids (glutamic acid(glu), glutamine(gln) or asparagine(asn)). The size of liposomes was about 100 nm. According to the glucose-induced turbidity changes, liposomes composed of DPPC and glutamic acid have higher glucose binding affinity than liposomes of DPPC-glutamine or DPPC-asparagine. Also, the liposomes were more stable in terms of aggregation or fusion than the others (DPPC-glutamine, DPPC-asparagine and DSPC-amino acids). As a rdsult, stable liposomes with an affinity for glucose could be prepared with DPPC and glutamic acid.

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Enhanced Performance of Immunoassays with Affinity-Purified Analyte-Enzyme Conjugates as Signal Generators

  • 백세환
    • Bulletin of the Korean Chemical Society
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    • v.18 no.5
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    • pp.515-519
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    • 1997
  • In a competitive enzyme immunoassay, the performance was tested with different analyte-enzyme conjugates (signal generators) in their binding constants to antibody. Analyte (progesterone)-enzyme (glucose oxidase; GO) conjugates were chemically synthesized and purified by using a gel column with an immobilized antibody to progesterone. In an elution range from the column, four peaks were detected by measuring total enzyme activities. Results from further analysis indicated that the first peak contained mainly unreacted GO while the next three peaks conjugated GO with progesterone. These three conjugate preparations were compared in dose-response curves along with the unpurified mixture. The purified conjugates showed higher detection capabilities than did the mixture. Especially, the preparation in the second peak next to the free GO peak improved the detection limit five times. This performance was comparable to that of a progesterone-horseradish peroxidase conjugate that has been identified to have one progesterone ligand.

Development of Homogeneous Enzyme Immunoassay for the Organophosphorus Insecticide Fenthion

  • Kim, Bok-Hee;Park, Eun-Yong;Lee, Yong-Tae;Lee, Jung-Hun;Lee, Sang-Hee
    • Journal of Microbiology and Biotechnology
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    • v.17 no.6
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    • pp.1002-1009
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    • 2007
  • A rapid, convenient homogeneous competitive enzyme immunoassay for estimating the amount of fenthion is described. The assay utilizes glucose-6-phosphate dehydrogenase-hapten conjugates that are inhibited in solution by antibodies obtained from bovine serum albumin-hapten conjugates. In order to investigate the effects of bridging group recognition on the sensitivity of dose response characteristics, the bridging groups of varying alkyl chain length were attached at the phosphate position of fenthion. Among the antibodies used, the one obtained from the use of hapten (fenthion analog) with the same bridging group structure that was used in preparing the enzyme-fenthion conjugates showed maximum inhibition (up to 51.8%) in the absence of fenthion. In the presence of fenthion, the activity of the enzyme-hapten conjugate is regained in an amount proportional to the fenthion concentration. Under the optimized condition, the $ED_{50}$ value for fenthion was $0.809{\mu}g/ml$. The assay developed in this study is a rapid effective screening method for fenthion prior to precise analysis.

Glucose Binging Affinity of DPPC-ODA-asparagine and Stability of Liposomes Adding Cholesterol (DPPC-ODA-asparagine 리포솜의 포도당 친화도 및 콜레스테롤 첨가에 따른 안정성 측정)

  • 문제영;이기영;김진철;박기남
    • KSBB Journal
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    • v.16 no.2
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    • pp.170-173
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    • 2001
  • Liposome-amino acid conjugates were prepared using dipalmitolyphosphatidylcholine(DPPC) and hydrophobically modified asparagine. A microdialyzer was used to measure glucose diffusion. The glucose binding affinity of DPPC-ODA-asparagine liposomes higher than that of DPPC liposomes and distilled water. The size of DPPC-ODA-asparagine was approximately 75-150 nm. Cholesterol increased the stability of liposomes, and reduced the size of liposome particles.

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Hydrolysis of ${\beta}-glycosidic$ Bonds of Isoflavone Conjugates in the Lactic Acid Fermentation of Soy Milk (대두 요구르트 제조에서 이소플라본 배당체의 가수분해)

  • Choi, Yeon-Bae;Woo, Je-Gu;Noh, Wan-Seob
    • Korean Journal of Food Science and Technology
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    • v.31 no.1
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    • pp.189-195
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    • 1999
  • Isoflavones of soy milk were mainly present as sugar conjugates such as genistin and daidzin which a glucosyl residue was attached to their aglycones, genistein and daidzein through ${\beta}-glycosidic$ bond, respectively. When soy milk containing sucrose as a sugar source was fermented with lactic acid bacteria, small amount of lactic acid $(0.16{\sim}0.29%)$ was produced but isoflavone conjugates were fully hydrolyzed. Supplementation of glucose or lactose was required for normal lactic acid production and affected the hydrolysis of isoflavone conjugates in some lactic acid bacteria. In the case of Lactobacillus delbrueckii subsp. delbrueckii KCTC 1047, glycosidic bond of isoflavone was fully hydrolyzed regardless of glucose supplementation. But only $25{\sim}40%$ of daidzin and $65{\sim}80%$ of genistin was hydrolyzed when glucose was added into soy milk in the other lactic acid bacteria, Lactobacillus bulgaricus KCTC 3188, Lactobacillus casei KCTC 3109, Lactobacillus delbrueckii subsp lactis KCTC 1058, Lactobacillus lactis KCTC 2181. The hydrolyzing enzyme, ${\beta}-glucosidase$ produced by lactic acid bacteria except Lactobacillus delbrueckii subsp. delbrueckii KCTC 1047 could be considered as inducible in the fermentation of soy milk and its production was decreased when glucose was added.

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Studies on the Polysaccharide Extracted from Ganoderma Incidum (영지버섯에서 분리한 항암성 다당체에 관한 연구)

  • 김성환;김을상;김영식
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.1
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    • pp.147-153
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    • 1995
  • The cultured mycelial cells of Ganoderma lucidum was extracted by alkali, and then neutralized by acid. The extract was passed through the column of DEAE cellulose for more purification. The neutral fraction was concentrated and precipitated with 95% ethanol. The precipitate was lyophilized and then PSG(polysaccharides) was obtained. PSG was composed of 82.2% polysaccharide, 0.7% protein and 17.1% uronic acid. Sugar conjugates of its hydrolysates were produced using with fluorescent compound(7-amino-1,3-naphthalene disulfonic aicd : 7-AGA), and then fluorescent labeled sugar conjugates were separated by reverse phase high perfomance liquid chromatography. Hydrolysates of PSG were composed of sixteen amino acids and 95.7% glucose, 2.7% xylose, 1.6% fucose and tract amount of galactose and mannose. The immunomodulating effects of PSG on macrophage were perfomed using murine macrophage cell line ATCC TIB 71 cells. PSG augumented the phagocytic activity of TIB 71 cells against fluorescent latex beads.

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Enzymatic synthesis of sugar esters of L-lysine and L-aspartic acid

  • Jeon, Gyu-Jong;Park, O-Jin;Sin, Mun-Sik;Yang, Ji-Won
    • 한국생물공학회:학술대회논문집
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    • 2001.11a
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    • pp.646-647
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    • 2001
  • The enzymatic synthesis of conjugates of lysine and aspartic acid with D-glucose was studied. Optimase M-440 showed the very poor regioselectivity in the transesterification of $N{\alpha}$,$N'{\varepsilon}-di-t-Boc-L-Lys-OTFE$ and N-t-Boc-L-Asp-diOTFE with D-glucose. The acylation of glycosidic -OH and primary -OH of D-glucose occurred. However, Optimase M-440 catalyzed only the acylation of primary -OH group in the transesterification of $N{\alpha}$,$N'{\varepsilon}-di-t-Boc-L-Lys-OTFE$ and N-t-Boc-L-Asp-diOTFE with ${\alpha}-$ and ${\beta}-methylglucopyranoside$ in high yields without any other transesterification. Optimase M-440 also discriminated carboxyl groups of N-t-Boc-L-Asp-diOTFE.

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