• Title/Summary/Keyword: glycosyl-sucrose

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Effects of Glycosyl-Sucrose on Blood Glucose, Serum Lipids and Activities of Carbohydrate Hydrolysing Enzymes in Rats (Glycosyl-Sucrose가 흰쥐가 혈당 및 지질농도와 당 가수분해 효소의 활성에 미치는 영향)

  • 이선영;정영진;안경희
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.20 no.6
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    • pp.519-526
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    • 1991
  • This study was designed to investigate the effects of dietary glycosyl-sucrose on blood glucose and serum lipids concentrations and carbohydrate hydrolysing enzyme activities in rats. Male Sprague-Dawley rate were divided into 3 experimental groups, cornstarch group(68% cornstarch diet), sucrose group (20% sucrose + 48% cornstarch diet) and glycosyl-sucrose group(20% glycosyl sucrose + 48% cornstarch diet). After 6 weeks, the mean values of food efficiency ratio of 3 groups were not significantly different. There were no significant differences in mean fasting blood glucose levels of three groups, while the glucose response at 30 and 60 minutes and the group as compared with sucreose area showed a tendency to decrease in glycosyl-sucrose group as compared with sucrose group. Serum lipids (T. G., phospholipids, HDL-cholesteol and total lipid) contents showed no significant differences among 3 groups but a tendency of jejunum and ileum were significantly reduced in glycosyl-sucrose group as compared with cornstarch group. The maltose hydrolysing enzyme activity, especially in jejunum was lower in glycosyl-sucrose group than in sucrose group.

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Production of Glycosyl Sucrose by Cyclodextrin Glycosyltransferase of Alkalophilic Bacillus sp. No.4 and Its Application for Low-Cariogenic Sugar (호알칼리성 Bacillus sp. No.4의 Cyclodextrin Glycosyltransferase에 의한 Glycosyl Sucrose의 생산과 저충치성 당으로서의 응용)

  • Sohn, Cheon-Bae;You, Mi-Kyeong;Kim, Myung-Hee;Moon, Suk-Keung
    • Korean Journal of Food Science and Technology
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    • v.23 no.4
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    • pp.503-509
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    • 1991
  • Action of a cyclodextrin glycosyltransferase (CGTase) produced from alkalophilic Bacillus sp. No.4 was studied in a solution containing starch and sucrose to prepare glycosyl sucrose syrup with good sweetness and antidecaying properties of teeth. In the initial stage of the reaction the CGTase produced cyclodextrin, however, the cyclodextrin disappeared and glycosyl sucrose was formed with the lapse of reaction time. The best proportion of sucrose to starch for prodution of glycosyl sucrose was about 1 : 1. The optimum pH and temperature of the coupling reaction was pH 6.0 and $60^{\circ}C$, respectively. Main composition of glycosyl sucrose syrup prepared with 20% starch and 20% sucrose was sucrose 18%, glucosyl sucrose ($G_{2}F$) 15.3% and maltosyl sucorse ($G_{3}F$) 11.3%. And glucose, maltose and maltotriose were produced very little. Smaller amounts of acid and insoluble glucan were formed in the syrup by Streptococcus mtans OMZ176 than in the sucrose. Therefore, the prepared glycosyl sucrose sucrose syrup is expected to prevent teeth from decaying.

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Identification of Sugar-Responsive Genes and Discovery of the New Functions in Plant Cell Wall

  • Lee, Eun-Jeong
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2007.04a
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    • pp.65-73
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    • 2007
  • The objective of this study is to understand how regulatory mechanisms respond to sugar status for more efficient carbon utilization and source-sink regulation in plants. So, we need to identify and characterize many components of sugar-response pathways for a better understanding of sugar responses. For this end, genes responding change of sugar status were screened using Arabidpsis cDNA arrays, and confirmed thirty-six genes to be regulated by sucrose supply in detached leaves by RNA blot analysis. Eleven of them encoding proteins for amino acid metabolism and carbohydrate metabolism were repressed by sugars. The remaining genes induced by sugar supply were for protein synthesis including ribosomal proteins and elongation factors. Among them, I focused on three hydrolase genes encoding putative $\beta$-galactosidase, $\beta$-xylosidase, and $\beta$-glucosidase that were transcriptionally induced in sugar starvation. Homology search indicated that these enzymes were involved in hydrolysis of cell wall polysaccharides. In addition to my results, recent transcriptome analysis suggested multiple genes for cell wall degradation were induced by sugar starvation. Thus, I hypothesized that enzyme for cell wall degradation were synthesized and secreted to hydrolyze cell wall polysaccharides producing carbon source under sugar-starved conditions. In fact, the enzymatic activities of these three enzymes increased in culture medium of Arabidopsis suspension cells under sugar starvation. The $\beta$-galactosidase encoded by At5g56870 was identified as a secretory protein in culture medium of suspension cells by mass spectrometry analysis. This protein was specifically detected under sugar-starved condition with a specific antibody. Induction of these genes was repressed in suspension cells grown with galactose, xylose and glucose as well as with sucrose. In planta, expression of the genes and protein accumulation were detected when photosynthesis was inhibited. Glycosyl hydrolase activity against galactan also increased during sugar starvation. Further, contents of cell wall polysaccharides especially pectin and hemicellulose were markedly decreased associating with sugar starvation in detached leaves. The amount of monosaccharide in pectin and hemicellulose in detached leaves decreased in response to sugar starvation. These results supported my idea that cell wall has one of function to supply carbon source in addition to determination of cell shape and physical support of plant bodies.

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Enzymatic Properties of Cyclodextrin Glycosyltransferase from Alkalophilic Bacillus sp. YC-335 (호알칼리성 Bacillus sp.가 생산하는 Cyclodextrin Glycosyltransferase의 효소적 특성)

  • Jung, Yong-Joon;Jung, Myeong-Ho;Yu, Ju-Hyun
    • Korean Journal of Food Science and Technology
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    • v.23 no.1
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    • pp.93-97
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    • 1991
  • The enzymatic properties of purified CGTase from alkalophilic Bacillus sp. YC-335 have been examined. Apparent Vmax values of the enzyme in transferring glycosyl residues ${\alpha}-,\;{\beta}-and\;{\gamma}-cyclodextrin(CD)$ to sucrose were $16.13,\;21.8\;and\;9.8{\mu}moles/min/mg\;protein$, respectively and Km values of the corresponding CD were 1.68, 0.33 and 0.37 mM, respectively. A number of saccharides, specially starch hydrolyzates such as glucose and maltose, could activate the dextrinizing activity of the enzym. However, the dextrinizing activity was inhibited by ${\beta}-CD$. It was found from Lineweaver-Burk plot that the inhibition of CGTase by ${\beta}-CD$ was noncompetitive. High performance liquid chromatographic analysis showed that the enzyme has three kinds of activity ; transglycosylation and disproportionation as well as cyclization.

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Hydrolysis Activity of ${\alpha}-Galactosidase$ from Bacillus licheniformis (Bacillus licheniformis로부터 생산된 ${\alpha}-Galactosidase$의 가수분해 활성)

  • Kim Hyun Suk;Lee Kyung-Seob;So Jae Ho;Yoon Ki-Hong
    • Korean Journal of Microbiology
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    • v.40 no.4
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    • pp.328-333
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    • 2004
  • The maximum productivity of ${\alpha}-galactosidase,$ capable of hydrolyzing completely ${\alpha}-D-l,6-galactopyranosyl$ linkages within oligomeric substrates such as melibiose, raffinose and stachyose to liberate galactose residue, was reached to 718 mU/ml in the culture filtrate of Bacillus licheniformis at death phase. The ${\alpha}-galactosidase$ was identified to show different efficiencies for hydrolyzing the ${\alpha}-galactooligosaccharides$ according to analysis of reaction products by both TLC and quantification of the liberated reducing sugars. The enzyme was active on ${\alpha}-galactooligosaccharides$ in the order of melibiose, raffinose, and stachyose. Though the hydrolyzing activity of enzyme was faintly inhibited by reaction products such as galactose, glucose and sucrose with amounts of five folds more than the added substrates (20 mM), the largest inhibition of enzyme activity was caused by galactose among the end products. Unknown compound, which migrated slower than melibiose on TLC, was detected during hydrolysis reaction of melibiose, suggesting that the ${\alpha}-galactosidase$ has a glycosyl transferase activity. In addition, the enzyme was able to hydrolyze efficiently raffinose and stachyose existed in the soluble extract of soybean meal.