• Title/Summary/Keyword: isozyme

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Effect of chloride ions on the catalytic properties of human pancreatic α-amylase isozyme produced in Pichia pastoris (Pichia pastoris에서 생산된 인체 췌장 α-아밀레이스 동질효소의 촉매활성에 대한 염소이온의 영향)

  • Kim, Min-Gyu;Kim, Young-Wan
    • Korean Journal of Food Science and Technology
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    • v.48 no.4
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    • pp.341-346
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    • 2016
  • The AMY2B gene, encoding human pancreatic ${\alpha}$-amylase isozyme (HPA II), was expressed in Pichia pastoris, and the effects of chloride ions on HPA II activity toward starch substrates were investigated. As seen with chloride ion-dependent ${\alpha}$-amylases-including HPA I, the isozyme of HPA II-chloride ions increased enzyme activity and shifted the optimal pH to an alkaline pH. The activity enhancement by chloride was more significant at pH 8 than that at pH 6, suggesting that the protonation state of the general acid/base catalyst of HPA II was important for the hydrolysis of starches at an alkaline pH because of the increase in its $pK_a$ by chloride ions. The turnover values for cereal starches as the substrates markedly increased in the presence of chloride by up to 7.2-fold, whereas that for soluble starch increased by only 1.7-fold. Chloride inhibited substrate hydrolysis at high substrate concentrations, with $K_i$ values ranging from 6 to 15 mg/mL.

Electrophoretic Studies of Peroxidase Isoenzymes for Ages, Locations, Organs, Cultivars and Hybrids in the Apple Trees (사과의 수령(樹齡), 지역(地域) 및 부위(部位)에 따른 Peroxidase 동위효소(同位酵素)의 변동(變動)과 품종간(品種間) 및 그 교잡묘간(交雜苗間)의 차이(差異))

  • Chung, Keun Ok;Kim, Young Rae
    • Korean Journal of Agricultural Science
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    • v.16 no.1
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    • pp.26-35
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    • 1989
  • Studies were carried out to compare from the viewpoint of peroxidase isoenzyme patterns by ages, locations and organs. In addition, the relationships among six cultivars peroxidase isoenzyme patterns were compared and the relationships between cultivars and their hybrids were examined. The results are summarized as follows. 1. The zymogram was not affected by the ages of 'Fuji' cultivar. 2. There was no locational difference in zymogram among Suwon, Taejon and Yesan in 'Fuji' and 'Tsugaru' cultivars. 3. Significant difference in isozyme patterns was found between stems and leaves in 'Fuji' and 'Tsugaru' cultivars. 4. There were some differences in zymogram among 'Ralls Genet', 'Fuji', 'Jonathan', 'Starking', 'Golden Delicous' and 'Tsugaru' cultivars. 5. Classification was made by the peroxidase isozyme development between cultivars and their hybrids. 1) The type showed both parent's isozyme pattern. 2) The type showed a loss of a part of parent's isozyme bands. 3) The type developed new isozymes which were not detected in parent plants.

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Classification of Isolates of Ganoderma lucidum, Schizophyllum commune and Cordyceps spp. by Electrophoretic Patterns of Isozymes (Isozyme patterns 차이에 의한 영지, 치마버섯 및 동충하초의 계통분류)

  • Lee, June-Woo;Lee, Kweon-Haeng
    • The Korean Journal of Mycology
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    • v.19 no.2
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    • pp.101-108
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    • 1991
  • To classify fungal species employed for pharmacological effects, mycelial proteins of six isolates of Ganoderma lucidum, five isolates of Schizophyllum commune and five isolates of Cordyceps spp. were separated on polyacrylamide gel to compare them by esterase, acid phosphatase, leucine aminopeptidase and peroxidase patterns. Similarity of isozyme patterns among the isolates of G. lucidum IY003, IY004, IY005 and IY008 was indicated over 70%, but that among the isolates of G. lucidum IY009, IY010 and others was indicated from 48% to 9%. Highest similarity of isozymes of S. commune was observed to be between IY803 and IY805, and similarity between these two isolates was 57%. Similarity among other isolates was shown to be from 40% to 56%. Isozyme patterns of Cordyceps spp. were comparatively different, even though they were originated from the same kind of insect as their isolate. Similarity between Cordyceps spp. IY901 and IY904, which was isolated from moths, was 67% and that of IY905 and IY909, which was originated from the larvae, was 42%. Similarity among other isolates was shown to be from 12% to 67%.

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PHENOLOXIDASE AND ANTIOXIDANT IN KOREAN GINSENG (고려인삼에 있어서의 페놀 산화효소의 항산화물질)

  • Park E.Y.;Luh B.S.;Branen A.L.
    • Proceedings of the Ginseng society Conference
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    • 1984.09a
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    • pp.257-275
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    • 1984
  • Enzymatic browning is considered desirable in tea and tobacco processing but undesirable in many fruits processing at the present time. It is necessary to understand the nature of the enzyme, phenoloxidase, in order to control browning reactions, and extend its effects to formation of browning products as antioxidants in ginseng. Ginseng exhibits antioxidant activity when incorporated with turkey dark meat patties. The activity in red ginseng showed about two times stronger than white ginseng. One of the phenolic antioxidants from fresh, white and reprocessed white ginseng was identified as phenol 2.6 Bis(1.1 dimethyl ethyl) 4-methyl among several unknown compounds by GC/mass spectrometer. In red ginseng, no phenol 2.6 Bis (1.1 dimethyl ethyl) 4-methyl was detected, the compound may be polymerized by phenoloxidase and form some higher molecular compounds which may possess high antioxidant activity. Phenoloxidase isozymes in fresh Korean ginseng (panax ginseng C.A. Meyer) were extracted with phosphate buffer at pH 7.3. The isozymes were purified through ammonium sulfate fractionation, dialysis and chromatography on a DEAE-cellulose column. Two groups of phenoloxidase were shown to be present, one in the floating agglomerated group and the other in the precipitate. group from the 0.85 saturation ammonium sulfate. The DEAE-cellulose column chromatography, the phenoloxidase isozyme present in the precipitate appears as the first peak (I), and that in the agglomerate in the second peak (II). Isozyme I showed higher activity with catechin and catechal, and isozyme II showed higher activity with p-cresol. The isozyme showed two optimum pH activity one at pH 4.5 and the other at 8.5 with catechin as substrate. Korean ginseng phenoloxidase has high heat stability. When heated at $75^{\circ}C$ for 2 hours, its activity remained $90\%\;and\;80\%$ on phenoloxidase I and II respectively. Phenoloxidase I was most active on (+) catechin followed by p-cresal, catechol and epicatechin. Phenoloxidase II was most active on p-cresal followed by (+) catechin, catechol, p-coumanic acid and epicatechin. Sodium bisulfite, sodium cyanide, ascorbic acid glutachion in the oxidized form, sodium diethyl dithiocarbomate and ethylendiamine tetra acetate (EDTA) acted as inhibitors. Red ginseng color development was initiated by phenoloxidase and finished by a followed sun drying process. The antiaging activity of ginseng may be initiated by the antioxidant in the ginseng.

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The Protein and Isozyme Patterns During in vitro Plant Regeneration of Yooja (Citrus junos Sieb.) and Trifoliate Orange (Poncirus trifoliata Rafin.)

  • Park, Min-Hee;Jang, Hyun-Kyu;Cha, Young-Ju;Kim, Ho-Bun;Lee, Sook-Young
    • Plant Resources
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    • v.5 no.1
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    • pp.29-44
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    • 2002
  • In this study, plant regeneration through in vitro culture from plantlet stems of Yooja (C. junos Sieb.) and trifoliate orange (P. trifoliata Rafin.) was attempted to make mass-production system of virus-free plants having the same genotype with mother plant. In order to investigate physiological change depending on the developmental stage of plant regeneration, the changes of total protein, peroxidase and esterase activity and their isozyme patterns as well were examined in 1/2 MS medium. The results are as follows : 1. The MS medium for the optimal callus induction and shoot formation was utilized. The medium was supplemented either with 2,4-D and Kinetin or with BA and NAA. The optimal concentrations were the combination of 1.0mg/ 2,4-D +0.3mg/ Kinetin and 1.0mg BA +0.3mg NAA in callus induction and shoot formation, respectively. 2. For the plant regeneration from somatic embryos, 1/2 MS medium was used with supplements of growth regulators (free, 1.0mg/ IBA +1.0mg/ BA ,0.5mg/ IBA +0.5mg/ BA). Shooting and rooting were the best in the treatment of 0.5mg/ IBA and 0.5mg/ BA combination. 3. The total protein content has a tendency of increase with the developmental stage of embryo, but it was decreased at the plantlet. Also it was the highest at 8 and 6 weeks stage in C. junos Sieb. and P. trioliata Rafin, respectively. In the SDS-PAGE pattern of protein, C. junos Sieb. showed bands of 29.0 and 40kDa at 10 weeks. The 45,66 and 97.4 kDa bands at 10 weeks of culture were shown in P. trifoliata Rafin. 4. The highest esterase activity was shown at the 6 and 8 weeks of culture in C.junos Sieb. and P. trifoliata Rafin.., respectively. 5. Esterase isozyme patterns were shown difference according to the developmental stage. In C. junos Sieb. a new band was observed at pl 7.7 following 4 weeks culture. On the other hand, new bands in P. trifoliata Rafin. were observed at pl 7.5~6.5 following 4 and 6 weeks culture, respectively.

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Heterogeneity of Lactate Dehyrogenase Isozymes in tissues of Lampetra japonica (칠성장어(Lampetra japonica) 조직내 젖산수소이탈효소 동위효소들의 이질성)

  • 조성규;염정주
    • The Korean Journal of Zoology
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    • v.36 no.3
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    • pp.319-328
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    • 1993
  • All vertebrates other than lampreys exhibit multiple loci encoding lactate dehydrogenase (EC 1.1.1.27,LDH). From the result shown by cellulose acetate and starch gel electrophoresis, the lampreys were-reported to have only one isozyme. However in our results the LDH of skeletal muscle, heart and kidney in Lampetra japonica were separated into three isozymes and that of liver was separated into two isozymes by polyacrylamide gel electrophoresis. The LDH of skeletal muscle and heart were separated into four isozymes and that of liver was separated into two isozymes by polyacrylamide gel isoelectric focusing (PAGlEF). The LDH of skeletal muscle were separated into four isozymes through the chromatofocusing. The molecular weight of LDH isozymes in skeletal muscle was approximately estimated to be 140,000 by Sephadex G-200 gel filtration. The LDH isozymes of skeletal muscle, heart and liver were inhibited by pyruvate to the nearly similar degree. And the degree of inhibition by pyruvate showed the value between LDH A$_4$and LDH B$_4$isozyme. And the LDH isozymes in heart, liver and skeletal muscle were thermostable. The results mentioned above indicate that the LDH isozyme in lamprey (Lampetra japonica) has not one isozyme but isozymes. And it is also found out that the two structures of their subunits are similar each others.

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Metabolism of Lactate Dehydrogenase in Tissues from Ldh-C Expressed Fish at Starved State (기아상태에서 Ldh-C가 발현된 어류 조직의 젖산탈수소효소의 대사)

  • Yum, Jung Joo;Kim, Gyu Dong
    • Journal of Life Science
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    • v.26 no.2
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    • pp.155-163
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    • 2016
  • Metabolism of lactate dehydrogenase (EC 1.1.1.27, LDH) was studied to identify the function of LDH-C. Tissues of LDH liver-specific Ldh-C expressed Carassius auratus and eye-specific Ldh-C expressed Lepomis macrochirus after starvation were studied. LDH activity in liver tissue from C. auratus was increased after starvation. And LDH specific activity (units/mg) and LDH/CS were increased in tissues. It means the anaerobic metabolism was taking place in C. auratus after starvation. LDH B4 isozyme was decreased in skeletal muscle and increased in heart tissue. LDH C4 isozymes those showed in eye and brain tissues were identified as liver-specific C4 isozymes and disappeared after starvation. And C hybrid in eye, A4 isozyme in brain, and both C hybrid and C4 isozyme in liver tissue were increased, respectively. In L. macrochirus, the level of variation of LDH activities was low but greatly increased especially in eye tissue and LDH A4 and AC hybrid were increased in brain tissue. The LDH activities in tissues from C. auratus and L. macrochirus remained 30.30-18.64% and 25-18.75%, respectively, as a result of the inhibition by 10 mM of pyruvate. The KmPYR values of LDH in C. auratus were increased. As a result, LDH liver-specific C4 isozyme was expressed in liver, brain and eye tissues during starvation. It seems metabolism of lactate was predominant in brain tissue. After starvation, the liver-specific LDH-C was affected more than eye-specific LDH-C.

Purification and characterization of the chitinase from Bacillus subtilis JK-56 (Bacillus subtilis JK-56이 생산하는 chitinase isozyme의 정제와 특성 규명)

  • 전홍기;김낙원;정영기
    • Journal of Life Science
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    • v.12 no.1
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    • pp.77-86
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    • 2002
  • Chitin, a $\beta$-1,4 polymer of N-acetyl-D-glucosamine, is one of the most abundant organic compounds in nature. Chitinase (EC 3.2.1.14) is an enzyme that degrades chitin to chito-oligosaccharides, diacetyl rhitobiose and N-acetyl-D-glucosamine. An extracellular chitinase-producing bacterial strain was isolated from soil and named to as Bacillus subtilis JK-56. Optimum culture condition of B. subtilis JK-56 for the production of chitinase was 1% chitin, 0.5% polypepton, 0.1% KCl, 0.05% MnS $O_4$.4$H_2O$, 37$^{\circ}C$, initial pH 7.0 and 40 hour culture time. When B. subtilis JK-56 was grown in the optimum medium, one major active band and two minor active bands were detected by native-PAGE and active staining of the gel. Among them, the major band was purified from the culture supernatant by 70% ammonium sulfate precipitation and native-PAGE with BIO-RAD Model 491 Prep-Cell and named as Chi-56A. Its molecular weight was estimated to be 53kDa monomer and the isoelectric point (pI) was pH 4.3. The pH and temperature for the optimum activity of Chi-56A were pH 6.0 and $65^{\circ}C$, respectively. Chi-56A was stable up to $65^{\circ}C$ and in alkaline region. Its $K_{m}$ value for colloidal chitin was 17.33g/L. HPLC analysis of the reaction products confirmed that Chi-56A was an exo type chitinase.e.

Enhanced Expression and Substrate Specificity Changes of Barley $\alpha$-Amylase Isozyme 2 in E. coli by Substitution of the $42^{nd}$ Alanine Residue with Proline (42번째 alanine 잔기의 proline 치환에 의한 보리 $\alpha$-amylase isozyme 2의 대장균 내 발현 증가 및 기질특이성 변화)

  • Choi, Seung-Ho;Jang, Myoung-Uoon;Lee, Hong-Gyun;Svensson, Birte;Kim, Tae-Jip
    • Korean Journal of Food Science and Technology
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    • v.42 no.2
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    • pp.198-203
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    • 2010
  • Although barley $\alpha$-amylase isozyme 1 (AMY1) and 2 (AMY2) share up to 80% of amino acid sequence identity, their enzymatic properties differ remarkably. In this study, the 42nd alanine residue of AMY2 was replaced with another random amino acid via saturation mutagenesis. Eight out of 370 recombinant E. coli cells showing enhanced starch-hydrolyzing activity were characterized as possessing the same proline residue instead of alanine. Even though the specific activity of AMY2-A42P is reduced to 81% of wild-type, its expression level and purification yield were enhanced by approximately 2 and 4 times that of AMY2, respectively. Characterization of its enzymatic properties confirmed that AMY2-A42P is similar to that of wild-type. However, its specificity to starch substrates is likely to be intermediate between AMY1 and AMY2.