• Title/Summary/Keyword: /alpha-galactosidase

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Characterization of ${\alpha}-galactosidase$ from Bifidobacterium sp. Int-57 (Bifidobacterium sp. Int-57 ${\alpha}-galactosidase$의 효소 특성)

  • Yeo, Na-Im;Lee, Se-Kyung;Ji, Geun-Eog
    • Korean Journal of Food Science and Technology
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    • v.25 no.6
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    • pp.689-693
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    • 1993
  • ${\alpha}-galactosidase$ releases galactoside from raffinose and stachyose which are the major sugars in soybean, Although raffinose and stachyose were known as flatulence factors, these sugars were recently claimed as bifidus factors. In this experiment we studied the properties of ${\alpha}-galactosidase$ and its production from Bifidobacterium sp. Int-57. Int-57 produced higher level of ${\alpha}-galactosidase$ than other intestinal bacteria. The production of ${\alpha}-galactosidase$ was greater when grown on raffinose compared with other carbohydrates tested. Partially purified ${\alpha}-galactosidase$ was obtained after sonication of harvested cell pellet followed by DEAE-cellulose chromatography and Sepharose CL-6B gel filtration, and assayed using PNP-${\alpha}-galactosidase$ as a substrate. Optimum pH for activity was 7.0 and optimum temperature was $40^{\circ}C$. At 5 mM concentration of metal ions, $CoCl_{2}\;and\;CuCl_{2}$ and inhibited the enzyme activity by 33% and 21% respectively. The enzyme was shown to hydrolyse genuine substrates, i.e. raffinose and stachyose.

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Biochemical Characterization of α-Galactosidase-Producing Thermophilic Bacillus coagulans KM-1 (α-Galactosidase를 생산하는 고온성 Bacillus coagulans KM-1 균주의 생화학적 특성)

  • Nam, Ki Ho;Jang, Mi Soon;Park, Hee Yeon;Koneva, Elena
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.47 no.5
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    • pp.516-521
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    • 2014
  • A bacterium producing ${\alpha}$-galactosidase (${\alpha}$-$\small{D}$-galactoside galactohydrolase, EC 3.2.1.22) was isolated. The isolate, KM-1 was identified as Bacillus coagulans based on its 16S rRNA sequence, morphology, and biochemical properties. ${\alpha}$-Galactosidase activity was detected the culture supernatant of B. coagulans KM-1. The bacterium showed the maximum activity for hydrolyzing para-nitrophenyl-${\alpha}$-$\small{D}$-galactopyranoside (pNP-${\alpha}Gal$) at pH 6.0 and $50^{\circ}C$. It hydrolyzed oligomeric substrates such as melibiose, raffinose, and stachyose liberating a galactose residue, indicating that the B. coagulans KM-1 ${\alpha}$-galactosidase hydrolyzed ${\alpha}$-1,6 linkage. The results suggest that the decreased stachyose and raffinose contents in fermented soybean meal are due to the ${\alpha}$-galactosidase activity.

Purification and Application of Earthworm /alpha-Galactosidase by Affinity Chromatography (Galactomannan 이용에 관한 연구 : Affinity Chromatography에 의한 지렁이 유래 /alpha-Galactosidase의 정제 및 응용법)

  • 박귀근;정규훈;소림수행
    • Microbiology and Biotechnology Letters
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    • v.27 no.4
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    • pp.298-303
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    • 1999
  • An $\alpha$-D-galactosidase ($\alpha$-D-galactoside galactohydrolase, EC 3. 2. 1. 22) from earthworm was purified by affinity chromatography using N-$\varepsilon$-aminocaproyl-$\alpha$-D-galactopyranosylamine coupled to sepharose and its properties were examined. The specific activity of the purified enzyme, tested with p-nitrophenyl-$\alpha$-D-galactopyranoside as substrate, was 314 units/mg protein, representing an 122-fold purification of the original crude extract. The final preparation obtained from by Sephadex G-25 chromatography showed a single band on SDS-polyacrylamide gel electrophoresis. The molecular weight was determined to be 48,000 by SDS-polyacrylamide gel electrophoresis. The purified galactosidase was showed maximum activity at pH 4.5 and 4$0^{\circ}C$, and was stable in the pH and temperature ranges from 4.0 to 5.5 and 30 to 5$0^{\circ}C$, respectively. The enzyme activity was inhibited by Zn2+, Hg2+ and Co2+. When the purified $\alpha$-galactosidase treated to guar gum for 6 hour, gel-promoting property was increased. It was clear that enzymatic elimination of galactose from guar gum by purified $\alpha$-galactosidase would lead to a significant increase in gelation ability.

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The Enzymatic Pattern of Bifdobacterium sp. Int-57 Isolated from Korean Feces (한국인 분변으로부터 분리한 Bifidobacterium sp. Int-57의 효소 Pattern)

  • 박헌국;강동현;이계호;윤석환;이세경;지근억
    • Microbiology and Biotechnology Letters
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    • v.20 no.6
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    • pp.647-654
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    • 1992
  • In order to study the physiological properties of the intestinal bacteria, we isolated the intestinal bacteria of Koreans and tested the enzymatic patterns. Isolated Bifidobacterium sp. Int-57 had the higher activity of $\alpha$-glucosidase, $\beta$-glucosidase, $\alpha$-galactosidase, $\beta$-galactosidase. $\beta$-xylosidase and $\alpha$-arabinofuranosidase than other intestinal microorganisms. The effect of the carbon sources on the production of each enzymes of Bijidobacterium sp. Int-57 was investigated. The most suitable carbon source for the production of $\beta$-glucosidase was maltose, for a-glucosidase cellobiose, for $\alpha$-galactosidase raffinose, for $\beta$-galactosidase lactose, and for $\beta$-xylosidase and $\alpha$-arabinofuranosidase xylose, respectively. In addition, we investigated the optimal conditions and pH stability of each crude enzymes. The optimal condition of a-glucosidase was pH 6.0 and $40^{\circ}C$. that of Jj-glucosidase pH 7.0 and 50oe, that of $\beta$-galactosidase pH 7.0 and $50^{\circ}C$, that of $\beta$-xylosidase pH 6.0 and $40^{\circ}C$ , and that of $\alpha$-arabinofuranosidase pH 5.0 and $50^{\circ}C$. respectively. a-Glucosidase was stable at pH 4.0-9.0. Jj-glucosidase at pH 4.0-7.0. $\beta$-galactosidase at pH 4.0-9.0, $\beta$-xylosidase at pH 4.0-6.0, and /3-arabinofuranosidase at pH 7.0-9.0, respectively.

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Effect of β-Mannanase and α-Galactosidase Supplementation to Soybean Meal Based Diets on Growth, Feed Efficiency and Nutrient Digestibility of Rainbow Trout, Oncorhynchus mykiss (Walbaum)

  • Yigit, Nalan Ozgur;Koca, Seval Bahadir;Isil, Behire;Diler, Ibrahim
    • Asian-Australasian Journal of Animal Sciences
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    • v.27 no.5
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    • pp.700-705
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    • 2014
  • A 12-week feeding trial was conducted with 87 g rainbow trout to evaluate the effects on growth performances, feed efficiency and nutrient digestibility of adding ${\beta}$-mannanase and ${\alpha}$-galactosidase enzymes, solely or in combination. Seven diets were prepared by adding ${\beta}$-mannanase, ${\alpha}$-galactosidase and mixed enzyme at two different levels (1 g/kg and 2 g/kg) to control diet (without enzyme) including soybean meal. Mixed enzymes (1 g/kg, 2 g/kg) were prepared by adding ${\beta}$-mannanase and ${\alpha}$-galactosidase at the same doses (0.5+0.5 g/kg and 1+1 g/kg). At the end of the experiment, addition of ${\beta}$-mannanase, ${\alpha}$-galactosidase and mixed enzyme to diet containing 44% soybean meal had no significant effects on growth performance and gain:feed (p>0.05). In addition, adding ${\beta}$-mannanase, ${\alpha}$-galactosidase and mixed enzyme in different rations to trout diets had no affect on nutrient digestibility and body composition (p>0.05).

Influence of Gibberellic Acid on α-D-Galactosidase Activity in the Grape Berry

  • Kang, Han-Chul;Lee, Seon-Hwa;Kim, Jong-Bum
    • Journal of Applied Biological Chemistry
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    • v.44 no.2
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    • pp.53-58
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    • 2001
  • Glycosidase activities in the grape flesh (Marguerite) were assayed, and the order of activity was marked as follows: ${\alpha}$-D-galactosidase>${\alpha}$-D-mannosidase>${\alpha}$-D-glucosidase>${\beta}$-D-galactosidase>${\beta}$-D-glucosidase. Of these glycosidases, ${\alpha}$- and ${\beta}$-D-galactosidases were prominently expressed by the treatment of gibberellic acid, resulting in 56 and 238% increase of activity, respectively. Most of ${\alpha}$-D-galactosidase was found in the flesh texture, and the activity increase by gibberellic acid occurred mostly in this tissue. The increase in ${\alpha}$-D-galactosidase activity was dependent on the concentration of gibberellic acid treated, showing a positive correlation. Gibberellic acid affected the content of total protein in the grape flesh, 49% increase by 75 ppm treatment. Above this concentration, higher gibberellic acid level did not influence the protein expression. Specific activity of the ${\alpha}$-D-galactosidase still increased, showing 24% increase in activity. Grape flesh subjected by gibberellic acid (100 ppm) resulted in the increased activity against a natural substrate, stachyose, showing 55% increase in activity from the grapes treated with 100 ppm of gibberellic acid. Other natural substrates, such as melibiose and raffinose, were also considerably hydrolyzed, and the extent was similar to that of stachyose hydrolysis. During postharvest storage, ${\alpha}$-D-galactosidase activity in the grape flesh increased by 51% after 20 days and then declined slowly.

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Specificity of Pichia guilliermondii $\alpha$-Galactosidase toward Galactomannans (Galactomannan 이용에 관한 연구 I. Galactomannan에 대한 Pichia guilliermondii유래 $\alpha$-Galactosidase의 특이성)

  • 박귀근
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.26 no.5
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    • pp.844-850
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    • 1997
  • $\alpha$-Galactosidase was partially purified from the culture filtrate of pichia guilliermondii by Mannobiose-Sepharose affinity column chromatography. The galactosidase exhibited maximum activity at pH 4.5 and 4$0^{\circ}C$, and was stable in the pH and temperature ranges of 4 to 5.5 and 30 to 6$0^{\circ}C$, respectively. The enzyme was inhibited by $Hg^{2+}$ and $Ag^{2+}$. The enzyme activity was ot affected considerably by treatment with other metal compounds. The enzyme hydrolyzed melibiose to galactose and glucose, raffinose to galactose and sucrose, and $Gal^{3}Man_{3}(6^{3}-$\alpha$-galactosyl-1,4-mannotriose)$ to galactose and mannotriose. On the contrary, it could not hydrolyze $Gal^{3}Man_{4}(6^{3}-galactosyl-1,4-$\alpha$-mannotetraose)$.

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Exo-O-Glycosylhydrolases in Korea Ginseng Roots

  • Yelena V.Sundukova;Lee, Mi-Ja;Park, Hoon
    • Journal of Ginseng Research
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    • v.24 no.2
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    • pp.89-93
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    • 2000
  • WB were screening the stele and the cortex of the ginseng roots (Panax ginseng C.A.Meyer) on the exo-0-glycosylhydrolase activities during vegetation period of 1999 year. The following p-nitrophenylglycosides were used to test exe-0-glycosylhydrolase activities: $\alpha$- and $\beta$-D-galactopyranosides,$\alpha$- and $\beta$-D-glucopyranosides, $\alpha$- and $\beta$-D-mannopyranosides, N-acetyl-$\beta$-D-glucosaminide, $\alpha$- and $\beta$-D-xylopyranosides $\alpha$- L-rhamnopyranoside, $\beta$-D-glucuronide, $\beta$-D-galacturonide, $\beta$-L-,$\alpha$-L- and $\beta$-D-fucopyranosides, $\alpha$-L-arabinopyranoside. Only $\beta$-D-galactosidase, $\alpha$-L-mannosi-dase , N- acetyl- ${\beta}$-D-slucosarninidase, $\alpha$-D-galacto sidase, $\alpha$-L-arabinosidase, and $\beta$-D-fuco sidase were found in both partsof ginseng roots. Their contents during the vegetation period were shown to differ considerably, being dependent not only on plant development stage but on plant tissue and environmental conditions too.

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Immobilization of the Antarctic Bacillus sp. LX-1 α-Galactosidase on Eudragit L-100 for the Production of a Functional Feed Additive

  • Lee, Jaekoo;Park, Inkyung;Cho, Jaiesoon
    • Asian-Australasian Journal of Animal Sciences
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    • v.26 no.4
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    • pp.552-557
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    • 2013
  • Partially purified ${\alpha}$-galactosidase from Bacillus sp. LX-1 was non-covalently immobilized on a reversibly soluble-insoluble polymer, Eudragit L-100, and an immobilization efficiency of 0.93 was obtained. The optimum pH of the free and immobilized enzyme was 6.5 to 7.0 and 7.0, respectively, while there was no change in optimum temperature between the free and immobilized ${\alpha}$-galactosidase. The immobilized ${\alpha}$-galactosidase was reutilized six times without significant loss in activity. The immobilized enzyme showed good storage stability at $37^{\circ}C$, retaining about 50% of its initial activity even after 18 d at this temperature, while the free enzyme was completely inactivated. The immobilization of ${\alpha}$-galactosidase from Bacillus sp. LX-1 on Eudragit L-100 may be a promising strategy for removal of ${\alpha}$-galacto-oligosaccharides such as raffinose and stachyose from soybean meal and other legume in feed industry.

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.