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      산업용 효소로써 티로시나아제 연구의 최근 동향

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      https://www.riss.kr/link?id=A99925376

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      다국어 초록 (Multilingual Abstract)

      Tyrosinases catalyze the hydroxylation of monophenolic compounds and the conversion of o-diphenols to oquinones. The enzymes are mainly involved in the modification of tyrosine into L-3,4-dihydroxyphenyl-alanine (L-DOPA) and DOPA/DOPAquinone-drived in...

      Tyrosinases catalyze the hydroxylation of monophenolic compounds and the conversion of o-diphenols to oquinones. The enzymes are mainly involved in the modification of tyrosine into L-3,4-dihydroxyphenyl-alanine (L-DOPA) and DOPA/DOPAquinone-drived intermolecular cross-linking, which play the key roles of pigmentation to the cells. It is ubiquitously distributed in microorganisms, plants, and animals all around the nature world. They are classified as copper-containing dioxygen activating enzymes; two copper ions are coordinated with six histidine residues in their active sites and they are distinguished as met-, deoxy-, and oxy-form depending on their oxidative states. Natural extraction and recombinant protein approaches have been tried to obtain practical amounts of the enzymes for industrial application. Tyrosinases have been widely applied to industrial and biomedical usages such as detoxification of waste water containing phenolic compounds, L-DOPA as a drug of Parkinson’s disease, biomaterials preparation based on the cross-linking ability and biosensors for the detection of phenolic compounds. Therefore, this review reports the mechanism of tyrosinase, biochemical and structural features and potential applications in industrial field.

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      목차 (Table of Contents)

      • Abstract
      • 1. 서론
      • 2. Tyrosinase 반응
      • 3. Tyrosinase의 생산
      • 4. Tyrosinase의 산업적 활용
      • Abstract
      • 1. 서론
      • 2. Tyrosinase 반응
      • 3. Tyrosinase의 생산
      • 4. Tyrosinase의 산업적 활용
      • 5. 결론
      • 참고문헌
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      참고문헌 (Reference)

      1 Lewandowski, A. T., "Tyrosine-based “activatable pro-tag”: Enzyme-catalyzed protein capture and release" 93 : 1207-1215, 2006

      2 Freddi, G., "Tyrosinase-catalyzed modification of Bombyx mori silk fibroin: Grafting of chitosan under heterogeneous reaction conditions" 125 : 281-294, 2006

      3 Anghileri, A., "Tyrosinase-catalyzed grafting of sericin peptides onto chitosan and production of protein-polysaccharide bioconjugates" 127 : 508-519, 2007

      4 Jus, S., "Tyrosinase-catalysed coating of wool fibres with different protein-based biomaterials" 20 : 253-269, 2009

      5 Pinero, S., "Tyrosinase from Rhizobium etli is involved in nodulation efficiency and symbiosis-associated stress resistance" 13 : 35-44, 2007

      6 De Faria, R. O., "The biotechnological potential of mushroom tyrosinases" 45 : 287-294, 2007

      7 Pawelek, J. M., "The biosynthesis of mammalian melanin" 70 : 136-145, 1982

      8 Rosenzweig, A. C., "Structural insights into dioxygen-activating copper enzymes" 16 : 729-735, 2006

      9 Likhitwitayawuid, K, "Stilbenes with tyrosinase inhibitory activity" 94 : 44-52, 2008

      10 Gyung Don Kang, "Silk Fibroin/Chitosan Conjugate Crosslinked by Tyrosinase" 한국고분자학회 12 (12): 534-539, 2004

      1 Lewandowski, A. T., "Tyrosine-based “activatable pro-tag”: Enzyme-catalyzed protein capture and release" 93 : 1207-1215, 2006

      2 Freddi, G., "Tyrosinase-catalyzed modification of Bombyx mori silk fibroin: Grafting of chitosan under heterogeneous reaction conditions" 125 : 281-294, 2006

      3 Anghileri, A., "Tyrosinase-catalyzed grafting of sericin peptides onto chitosan and production of protein-polysaccharide bioconjugates" 127 : 508-519, 2007

      4 Jus, S., "Tyrosinase-catalysed coating of wool fibres with different protein-based biomaterials" 20 : 253-269, 2009

      5 Pinero, S., "Tyrosinase from Rhizobium etli is involved in nodulation efficiency and symbiosis-associated stress resistance" 13 : 35-44, 2007

      6 De Faria, R. O., "The biotechnological potential of mushroom tyrosinases" 45 : 287-294, 2007

      7 Pawelek, J. M., "The biosynthesis of mammalian melanin" 70 : 136-145, 1982

      8 Rosenzweig, A. C., "Structural insights into dioxygen-activating copper enzymes" 16 : 729-735, 2006

      9 Likhitwitayawuid, K, "Stilbenes with tyrosinase inhibitory activity" 94 : 44-52, 2008

      10 Gyung Don Kang, "Silk Fibroin/Chitosan Conjugate Crosslinked by Tyrosinase" 한국고분자학회 12 (12): 534-539, 2004

      11 Van Gelder, C. W., "Sequence and structural features of plant and fungal tyrosinases" 45 : 1309-1323, 1997

      12 Fairhead, M., "Role of the C-terminal extension in a bacterial tyrosinase" 277 : 2083-2095, 2010

      13 Choi, Y. S., "Recombinant mussel adhesive protein fp-5 (MAP fp5) as a bulk bioadhesive and surface coating material" 27 : 729-737, 2011

      14 Prota, G., "Recent advances in the chemistry of melanogenesis in mammals" 75 : 122-127, 1980

      15 Dolashki, A., "Purification and characterization of tyrosinases from Streptomyces albus" 64 : 724-732, 2009

      16 Lerch, K., "Purification and characterization of a tyrosinase from Streptomyces glaucescens" 31 : 427-437, 1972

      17 Kong, K. H., "Purification and characterization of a highly stable tyrosinase from Thermomicrobium roseum" 31 : 113-118, 2000

      18 Flurkey, W. H., "Proteolytic processing of polyphenol oxidase from plants and fungi" 102 : 2160-2170, 2008

      19 Geng, J., "Protective action of bacterial melanin against DNA damage in full UV spectrums by a sensitive plasmid-based noncellular system" 70 (70): 1151-1155, 2008

      20 Pialis, P., "Production of L-DOPA from tyrosinase immobilized on nylon 6,6: enzyme stability and scaleup" 22 : 261-268, 1998

      21 Selinheimo, E., "Production and characterization of a secreted, C-terminally processed tyrosinase from the filamentous fungus Trichoderma reesei" 273 : 4322-4335, 2006

      22 Duran, N, "Potential applications of oxidative enzymes and phenoloxidase-like compounds in wastewater and soil treatment: A review" 28 : 83-99, 2000

      23 Pandey, G., "Mushroom tyrosinase catalyzed synthesis of coumestans, benzofuran derivatives and related heterocyclic-compounds" 45 : 6867-6874, 1989

      24 Solomon, E. I., "Multicopper oxidases and oxygenases" 96 : 2563-2606, 1996

      25 Michalik, J., "Monophenol monooxygenase and lincomysin biosynthesis in Streptomyces lincolnensis" 8 : 526-531, 1975

      26 Sanchez-Amat, A., "Molecular cloning and functional characterization of a unique multipotent polyphenol oxidase from Marinomonas mediterranea" 1547 : 104-116, 2001

      27 Garcia-Borron, J. C., "Molecular anatomy of tyrosinase and its related proteins: Beyond the histidine-bound metal catalytic center" 15 : 162-173, 2002

      28 Garcia-Rivera, J., "Melanization of cryptococcus neoformans reduces its susceptibility to the antimicrobial effects of silver nitrate" 39 : 353-357, 2001

      29 Plonka, P. M, "Melanin synthesis in microorganisms - biotechnological and medical aspects" 53 : 429-443, 2006

      30 Tuncagil, S., "L-Dopa synthesis using tyrosinase immobilized on magnetic beads" 58 : 187-193, 2009

      31 Bubacco, L., "Kinetic and paramagnetic NMR investigations of the inhibition of Streptomyces antibioticus tyrosinase" 8 : 27-35, 2000

      32 Shuster, V., "Isolation, cloning and characterization of a tyrosinase with improved activity in organic solvents from Bacillus megaterium" 17 : 188-200, 2009

      33 Tsujino, Y., "Hair coloring and waiving using oxidases" 42 : 273-282, 1991

      34 Yang, H. Y., "Extracellular and intracellular polyphenol oxidases cause opposite effects on sensitivity of Streptomyces to phenolics: A case of double-edged sword" 4 : e7462-, 2009

      35 Menter, J. M., "Electron transfer and photoprotective properties of melanins in solution" 10 : 214-217, 1997

      36 Tatsuma, T., "Disposable test plates with tyrosinase and beta-glucosidases for cyanide and cyanogenic glycosides" 408 : 233-240, 2000

      37 Streffer, K., "Determination of phenolic compounds using recombinant tyrosinase from Streptomyces antibioticus" 427 : 201-210, 2001

      38 Girelli, A. M, "Determination of an antioxidant capacity index by immobilized tyrosinase bioreactor" 57 : 5178-5186, 2009

      39 Matoba, Y., "Crystallographic evidence that the dinuclear copper center of tyrosinase is flexible during catalysis" 281 : 8981-8990, 2006

      40 Sendovski, M., "Crystallization and preliminary X-ray crystallographic analysis of a bacterial tyrosinase from Bacillus megaterium" 66 : 1101-1103, 2010

      41 Ismaya, W. T., "Crystal structure of agaricus bisporus mushroom tyrosinase: Identity of the tetramer subunits and interaction with tropolone" 50 : 5477-5486, 2011

      42 Chen, T. H., "Combinatorial screening for enzyme-mediated coupling. Tyrosinase-catalyzed coupling to create protein-chitosan conjugates" 2 : 456-462, 2001

      43 Halaouli, S., "Characterization of a new tyrosinase from Pycnoporus species with high potential for food technological applications" 98 : 332-343, 2005

      44 Ito, M, "Catalytic properties of an organic solvent-resistant tyrosinase from Streptomyces sp REN-21 and its high-level production in E. coli" 138 : 355-362, 2005

      45 Sakurai, T., "Basic and applied features of multicopper oxidases, CueO, bilirubin oxidase, and laccase" 7 : 220-229, 2007

      46 Fairhead, M., "Bacterial tyrosinases: Old enzymes with new relevance to biotechnology" 29 : 183-191, 2012

      47 Faccio, G., "Bacterial tyrosinases and their applications" 47 : 1749-1760, 2012

      48 Claus, H., "Bacterial tyrosinases" 29 : 3-14, 2006

      49 Saratale, R. G., "Bacterial decolorization and degradation of azo dyes: A review" 42 : 138-157, 2011

      50 Betancourt, A. M., "Analysis of tyrosinase synthesis in Streptomyces antibioticus" 138 : 787-794, 1992

      51 Chang, T. S., "An updated review of tyrosinase inhibitors" 10 : 2440-2475, 2009

      52 Kohashi, P. Y., "An efficient method for the overexpression and purification of active tyrosinase from Streptomyces castaneoglobisporus" 34 : 202-207, 2004

      53 Matoba, Y., "A molecular mechanism for copper transportation to tyrosinase that is assisted by a metallochaperone, caddie protein" 286 : 30219-30231, 2011

      54 Liu, N., "A heat inducible tyrosinase with distinct properties from Bacillus thuringiensis" 39 : 407-412, 2004

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