• Title/Summary/Keyword: laccase3

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Characteristics of Wood Meals by Laccase Delignification

  • Kim, MyungKil
    • Journal of the Korean Wood Science and Technology
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    • v.31 no.3
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    • pp.11-16
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    • 2003
  • On nitrobenzene oxidation of aspen, spruce, and knauf wood meals gave rise to vanilline, syrigaldehyde, p-hydroxybenzoaldehyde, vanillic acid, and other minor oxidation products. The phenolic aldehydes (p-hydroxybenzaldehyde, vanilline, and syringaldehyde) are derived from oxidative degradation of the corresponding 4-hydroxyphenylpropane units and their ethers. The lignin content of knauf wood meals was different as the concentration of NaOH solution and cooking temperature. The lignin contents of aspen, spruce, and knauf wood meals were decreased as laccase treatment. The laccase caused C-oxidation, demethylation, cleavage in phenolic groups and C-C cleavage in syrigyl structures.

Demethoxylation of Milled Wood Lignin and Lignin Related Compounds by Laccase from White-rot Fungus, Cerrena unicolor

  • Leonowicz, A.;Rogalski, J.;Malarczyk, E.;Grzywnowicz, K.;Ginalska, G.;Lobarzewski, J.;Ohga, S.;Pashenova, N.;Lee, S.S.;Cho, Nam-Seok
    • Journal of the Korean Wood Science and Technology
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    • v.28 no.4
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    • pp.29-40
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    • 2000
  • Highly purified Cerrena unicolor laccase (benzenediol:oxygen oxidoreductase, EC 1.10.3.2) caused the demethoxylation of milled wood lignin and several lignin related substances. The constitutive form of the enzyme produced extracellularly by C. unicolor fermenter culture was isolated and purified by ion-exchange chromatography on the DEAE-Toyopearl column and by affinity chromatography on a ConA-Sepharose and Syringyl-AH-Sepharose 4B columns. The enzyme was further immobilized on functionalized porous glass (CPG) and keratin coated CPG. The demethylating activity was monitored both by estimation of released methanol and by detection of the level of methoxyl groups (also in some water miscible solvents) after incubation of lignin materials with laccase preparations (free and immobilized). The effects of the incubation time and temperature on the demethoxylating activity of immobilized laccase preparations were also studied.

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Degradation of Lignosulfonate by Fungal Laccase with Low Molecular Mediators

  • Cho, Nam-Seok;Shin, Woon-Sup;Jeong, Seon-Wha;Leonowicz, A.
    • Bulletin of the Korean Chemical Society
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    • v.25 no.10
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    • pp.1551-1554
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    • 2004
  • In the presence of laccase, low molecular weight (M.W.) fractions from lignosulfonate (M.W. 97 kD) were produced. By Sephadex column chromatography, four lower M.W. fractions of 9 kD, 1.8 kD, 1 kD and 0.85 kD were identified. The addition of acetovanillone (AV) or acetosyringone (AS) enhanced to the degradation of lignosulfonate with fungal laccase. During this process, there were found new generation of lower M.W. fractions, e.g. approximately 20 kD, 1.8 kD, 1 kD and 0.85 kD for AV, and 20 kD, 3 kD, 1 kD and 0.85 kD for AS, respectively. The quantities of lower M.W. products (especially the fractions of M.W. 1 kD and 0.85 kD) were larger than those in the controls. Also, its degradation became more active in the presence of AS than AV. The presence of AS or AV seems to prevent the re-polymerization of degraded lignosulfonate by the laccase.

Differential Expression of Laccase Genes in Pleurotus ostreatus and Biochemical Characterization of Laccase Isozymes Produced in Pichia pastoris

  • Park, Minsa;Kim, Minseek;Kim, Sinil;Ha, Byeongsuk;Ro, Hyeon-Su
    • Mycobiology
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    • v.43 no.3
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    • pp.280-287
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    • 2015
  • In this study, transcriptome analysis of twelve laccase genes in Pleurotus ostreatus revealed that their expression was differentially regulated at different developmental stages. Lacc5 and Lacc12 were specifically expressed in fruiting bodies and primordia, respectively, whereas Lacc6 was expressed at all developmental stages. Lacc1 and Lacc3 were specific to the mycelial stage in solid medium. In order to investigate their biochemical characteristics, these laccases were heterologously expressed in Pichia pastoris using the pPICHOLI-2 expression vector. Expression of the laccases was facilitated by intermittent addition of methanol as an inducer and sole carbon source, in order to reduce the toxic effects associated with high methanol concentration. The highest expression was observed when the recombinant yeast cells were grown for 5 days at $15^{\circ}C$ with intermittent addition of 1% methanol at a 12-hr interval. Investigation of enzyme kinetics using 2,2-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid (ABTS) as a substrate revealed that the primordium-specific laccase Lacc12 was 5.4-fold less active than Lacc6 at low substrate concentration with respect to ABTS oxidation activity. The optimal pH and temperature of Lacc12 were 0.5 pH units and $5^{\circ}C$higher than those of Lacc6. Lacc12 showed maximal activity at pH 3.5 and $50^{\circ}C$, which may reflect the physiological conditions at the primordiation stage.

Electrochemical Behaviors of ABTS2- on the Thiol-modified Gold Electrodes

  • Kim, Hyug-Han
    • Journal of the Korean Electrochemical Society
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    • v.9 no.3
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    • pp.113-117
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    • 2006
  • The electrochemical properties of the redox mediator, 2,2'-azinobis (3-ethylbenzothiazoline-6-sulfonate) ($ABTS^{2-}$) were studied using cyclic voltammetry. The measured potentials (${E^o}'$ vs SCE) of the two redox couples of ABTS are 0.45 V for $ABTS^{2-}/ABTS^{\cdot-}$ and 0.87 V for $ABTS^{\cdot-}/ABTS^0$. The rate constant for heterogeneous electron transfer and the diffusion coefficients for $ABTS^{2-}$ are $5x10^{-3}cm\;s^{-1}$ and $3.1x10^{-6}cm^2\;s^{-1}$, respectively. Our interest in $ABTS^{2-}$ stems from the fact that this molecule functions as a substrate to the copper oxidase, laccase, by providing the reducing equivalents necessary for the biocatalyzed reduction of dioxygen to water. Consequently, when laccase is tethered to an electrode surface or dissolved in solution, $ABTS^{2-}$ can be used to quantify enzyme activity electrochemically.

Optimal Extraction and Characteristics of Lignocellulytic Enzymes from Various Spent Mushroom Composts (다양한 버섯 수확 후 배지로부터 목질섬유소 분해효소의 최적 추출 및 특성)

  • Lim, Sun Hwa;Lee, Yun Hae;Kang, Hee Wan
    • The Korean Journal of Mycology
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    • v.41 no.3
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    • pp.160-166
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    • 2013
  • Recovery of ${\alpha}$-amylase (EC 3.2.1.1), lignin peroxidase (EC 1.11.1.14), laccase (EC 1.10.3.2), xylanase (EC 3.2.1.8), ${\beta}$-xylosidase (EC 3.2.1.37), ${\beta}$-glucosidase (EC 3.2.1.21) and cellulase (EC 3.2.1.4) from spent mushroom composts (SMCs) of Pleurotus cornucopiae, Pleurotus ostreatus, Pleurotus eryngii, Hericium erinaceum, Lyophyllum ulmarium, Agrocybe cylindracea, Lentinus lepideus, and Flammulina velvtipes were investigated using different extraction buffers. The maximum recovery of the enzymes was mostly detected in SMC extracts with tap water and 0.25% Triton X-100 by shaking incubation (200 rpm) for 2 h at $4^{\circ}C$. The xylanase (152 U/g) and laccase (8.1 U/g) activities were the highest in SMC extracts from F. velvtipes and P. eryngii. In addition, high enzymatic activities of ${\alpha}$-amylase (3.6 U/g) and cellulase (3.4 U/g) was detected in SMC extract of A. cylindracea. Futhermore, cellulase and laccase activities of SMCE from P. eryngii were compared to commercial enzymes.

Purification of extracellular Cerrena unicolor laccase by means of affinity chromatography (친화크로마토그래프법을 이용한 Cerrena unicolor laccase의 정제특성)

  • A. Leonowicz;L. Gianfreda;J. Rogalski;M. Jaszek;M.W. Wasilewska;E. Malarczyk;A. Dawidowicz;M. Fink-Boots;G. Ginalska;Cho, Nam-Seok
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.29 no.4
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    • pp.7-17
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    • 1997
  • 균체가 생산하는 laccase 효소가 다방면으로 이용되면서, 이 효소를 균체로부터 대량으로 생산하고 분리.정제하여야 할 필요성이 대두되고 있다. 아울러 이 효소의 활성을 유도하기 위한 inducer 로서 2,5-xylidine 이 주로 사용되고 있는바, 이 xylidine 의 유독성이 인정되면서 사람에게 독성을 주지 않는 환경친화적 inducer의 검색이 필요하게 되었다. 본 연구에서는 백색부후균 Cerrena unicolor가 분비하는 laccase 효소의 유도를 위한 inducer로서 ferulic acid를 사용하였으며, 균체로부터 생산 및 분리된 laccase 효소의 정제특성을 구명코자 하였다. 본효소(constitutive enzyme)로서 I 및 II를, ferulic acid를 inducer로 사용한 경우 inducing 효소 III을 분리.정제하였다. 본 효소 I 및 II의 Michaelis 정수는 각각 737 M, 716 M 이었고, inducing효소 III은 167 M 로서, 기질에 대한 높은 친화성을 보여주고 있다. 분자량도 각각 65 kD, 63 kD 였으며, inducing효소 III은 59 kD 였다. 두효소 모두 15-19%의 당 및 단백질분자당 4M의 동(Cu)을 함유하고 있었다. 정제효율은 효소 I 및 II가 10.1%, 9.4% 였으며, III은 3.2% 였다. 모든 효소의 최적 pH 는 5.5였으며, 최적온도는 비교적 높은 $40^{\circ}C$였다.

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Investigation of Direct and Mediated Electron Transfer of Laccase-Based Biocathode

  • Jamshidinia, Zhila;Mashayekhimazar, Fariba;Ahmadi, Masomeh;Molaeirad, Ahmad;Alijanianzadeh, Mahdi;Janfaza, Sajad
    • Journal of Electrochemical Science and Technology
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    • v.8 no.2
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    • pp.87-95
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    • 2017
  • Enzymatic fuel cells are promising low cost, compact and flexible energy resources. The basis of enzymatic fuel cells is transfer of electron from enzyme to the electrode surface and vice versa. Electron transfer is done either by direct or mediated electron transfer (DET/MET), each one having its own advantages and disadvantages. In this study, the DET and MET of laccase-based biocathodes are compared with each other. The DET of laccase enzyme has been studied using two methods; assemble of needle-like carbon nanotubes (CNTs) on the electrode, and CNTs/Nafion polymer. MET of laccase enzyme also is done by use of ceramic electrode containing, ABTS (2,2'-azino-bis [3-ethylbenzthiazoline-6-sulphonic acid]) /sol-gel. Cyclic voltammetric results of DET showed a pair of well-defined redox peaks at $200{\mu}A$ and $170{\mu}A$ in a solution containing 5and $10{\mu}M$ o-dianisidine as a substrate for needle-like assembled CNTs and CNTs-Nafion composite respectively. In MET method using sol-gel/ABTS, the maximum redox peak was $14{\mu}A$ in the presence of 15 M solution o-dianisidine as substrate. The cyclic voltammetric results showed that laccase immobilization on needle-like assembled CNTs or CNTs-Nafion is more efficient than the sol-gel/ABTS electrode. Therefore, the expressed methods can be used to fabricate biocathode of biofuel cells or laccase based biosensors.

Sensing Characteristics of Tyrosinase Immobilized and Tyrosinase, Laccase Co-immobilized Platinum Electrodes

  • Quan, De;Kim, You-Sung;Shin, Woon-Sup
    • Bulletin of the Korean Chemical Society
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    • v.25 no.8
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    • pp.1195-1201
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    • 2004
  • Tyrosinase was covalently immobilized on platinum electrode according to the method we developed for laccase (Bull. Korean Chem. Soc. 2002, 23(7), 385) and p-chlorophenol, p-cresol, and phenol could be detected with sensitivities of 334, 139 and 122 nA/ ${\mu}M$ and the detection limits of 1.0, 2.0, and 2.5 ${\mu}M$, respectively. The response time ($t_{90\%}$) is 3 seconds for p-chlorophenol, and 5 seconds for p-cresol and phenol. The optimal pHs of the sensor are in the range of 5.0- 6.0. This sensor can tolerate at least 500 times repeated injections of p-chlorophenol with retaining 80% of initial activity. In case of tyrosinase and laccase co immobilized platinum electrode, the sensitivities are 560 nA/ ${\mu}M$ for p-phenylenediamine (PPD) and 195 nA/ ${\mu}M$ for p-chlorophenol, respectively. The sensitivity of the bi-enzyme sensor for PPD increases 70% compared to that of only laccase immobilized one, but the sensitivity for p-chlorophenol decreases 40% compared to that of only tyrosinase immobilized one. The sensitivity increase for the bi-enzyme sensor for PPD can be ascribed to the additional catalytic function of the co-immobilized tyrosinase. The sensitivity decrease for p-chlorophenol can be explained by the “blocking effect” of the co-immobilized laccase, which hinders the mass transport through the immobilized layer. If PPD was detected with the electrode that had been used for p-chlorophenol, the sensitivity decreased 20% compared to that of the electrode that had been used only for PPD. Similarly, if p-chlorophenol was detected with PPD detected electrode, the sensitivity also decreased 20%. The substrate-induced conformation changes of the enzymes in a confined layer may be responsible for the phenomena.

Studies on the Recycling Technology of the Waste Paper with Wood Degradable Enzyme(I) - Separation of Crude Enzyme from Wood Degradable fungi - (목질분해효소에 의한 고지의 재활용 기술연구 (제1보) -목질분해균으로부터 조효소의 단리)

  • 양재경;이중명;엄태진
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.29 no.1
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    • pp.43-51
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    • 1997
  • The various culture conditions of Trichoderma viride(ATCC 3454) and Phanerochaete chrysosporium(ATCC 26921) with glucose-pepton medium, Mandels medium, YMG medium for wood degradable enzyme were examined. Mycellium of the two species grew profusely on glucose-pepton medium. Maximum fungal growth was observed about 10days. But CMCase, Fpase, laccase activity in the culture medium with glucose-pepton was not detected. When grown in fermenter culture using Mandels medium, Trichoderma viride produced CMCase and Fpase. Its CMCase activity was 0.15 lU/ml and Fpase activity was 0.3 IU/ml within about 4-6days. Phanerochaete chrysosporium grown in a YMG medium gave the best enzyme activity when they were grown under stationary culture with an atmosphere of 100% oxygen. Levels of laccase activity of 3.0 mull were achieved in stationary culture under 100% oxygen. The enzyme condensation by ultrafiltration method caused a 2-fold(cellulase) and 6-fold(laccase) as compared to control activity.

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