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Original Articles

Sources, Properties and Suitability of New Thermostable Enzymes in Food Processing

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Pages 197-205 | Published online: 18 Jan 2007

REFERENCES

  • Adams , M. W.W. and Kelly , R. M. 1995 . Enzymes from microorganisms from extreme environments . C&E News , 73 : 32 – 42 .
  • Antranikian , G. , Rudiger , A. , Canganella , F. , Klingebero , A. M. and Sunna , A. 1995 . Biodegradation of polymers at temperatures up to 130°C . Pure Applied Chem , 4 : 661 – 669 . [CSA]
  • Baneyx , F. 1999 . Recombinant protein expression in Escherichia coli . Curr. Opin. Biotechnol , 10 : 411 – 421 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Bertoldo , C. and Antranikian , G. 2002 . Starch hydrolyzing enzymes from thermophilic archaea and bacteria . Curr. Opin. Chem. Biol , 6 : 151 – 160 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Cao , L. , van Langen , L. and Sheldon , R. A. 2003 . Immobilized enzymes: carrier-bound or carrier-free . Curr. Op. Biotechnol , 14 : 387 – 394 . [CSA] [CROSSREF]
  • Constantino , H. R. , Brown , S. H. and Kelly , R. M. 1990 . Purification and characterization of an α -glucosidase from hyperthermophilic bacterium Pyrococcus furiosus, exhibiting a temperature optimum of 105 to 115°C . J. Bacteriol , 172 : 3654 – 3660 . [CSA]
  • Coolbear , T. , Daniel , R. M. and Morgan , H. W. 1992 . The enzymes from extreme thermophiles: bacterial sources, thermostabilities and industrial relevance . Adv. Biochem. Eng. Biotechnol , 45 : 57 – 98 . [PUBMED] [INFOTRIEVE] [CSA]
  • Covan , D. , Daniel , R. and Morgan , H. 1985 . Thermophilic proteases: properties and potential applications . Trends Biotechnol , 3 : 68 – 72 . [CSA] [CROSSREF]
  • Covan , D. A. , Daniel , R. M. and Morgan , H. W. 1984 . Some properties of β -galactosidase from an extremely thermophilic bacterium . Biotechnol. Bioeng , 26 : 1141 – 1145 . [CSA] [CROSSREF]
  • Covan , D. A. 1997 . Thermophilic proteins: stability and function in aqueous and organic solvents . Comp. Biochem. Physiol., PartA: Mol. Integr. Physiol , 118 : 429 – 438 . [CSA]
  • Crabb , W. D. and Shetty , J. K. 1999 . Commodity scale production of sugars from starches . Curr. Opin. Microbiol , 2 : 252 – 256 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Dbrowski , S. , Sobiewska , G. , Maciuńska , J. , Synowiecki , J. and Kur , J. 2000 . Cloning, expression, and purification of the His6-tagged thermostable β -galactosidase from Pyrococcus woesei in Escherichia coli and some properties of the isolated enzyme . Protein Expression Purif , 19 : 107 – 112 . [CSA] [CROSSREF]
  • Di Lernia , I. , Morana , A. , Ottombrino , A. , Fusco , S. , Rossi , M. and De Rosa , M. 1998 . Enzymes from Sulfolobus shibatae for the production of trehalose and glucose from starch . Extremophiles , 2 : 409 – 416 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Dong , G. , Vieille , C. , Savchenko , A. and Zeikus , J. G. 1997 . Cloning, sequencing, and expression of the gene encoding extracellular α -amylase from Pyrococcus furiosus and biochemical characterization of the recombinant enzyme . Appl. Environ. Microbiol , 63 : 3569 – 3576 . [PUBMED] [INFOTRIEVE] [CSA]
  • Fabrizis , L. , Suarez , M. D. and Savalano , D. A. 1997 . Diet, genetics and lactose intolerance . Food Technol , 51 : 74 – 79 . [CSA]
  • Fischer , B. , Sumner , I. and Goodenough , P. 1993 . Isolation, renaturation, and formation of disulfide bonds of eukaryotic proteins expressed in Escherichia coli as inclusion bodies . Biotechnol. Bioengin , 41 : 3 – 13 . [CSA] [CROSSREF]
  • Frillingos , S. , Linden , A. , Niehaus , F. , Vargas , C. , Nieto , J. J. , Ventosa , A. , Antranikian , G. and Drains , C. 2000 . Cloning and expression of alpha-amylase from the hyperthermophilic archaeon Pyrococcus woesei in the moderately halophilic bacterium Halomonas elongata . J. Appl. Microbiol , 88 : 495 – 503 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Fukusumi , S. , Kamizono , A. , Horinouchi , S. and Beppu , T. 1988 . Cloning and nucleotide sequence of a heat-stable amylase gene from an anaerobic hermophile Dictyoglomus thermophilum . Eur. J. Biochem , 174 : 15 – 21 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Gekas , V. and Lopez-Leyva , M. 1985 . Hydrolysis of lactose: a literature rewiev . Process Biochem , 20 : 2 – 12 . [CSA]
  • Greenberg , N. A. and Mahoney , R. R. 1981 . Immobilization of lactase (β -galactosidase) for use in dairy processing. A review process . Proc. Biochem , Feb/March : 2 – 8 . [CSA]
  • Grzybowska , B. , Szweda , P. and Synowiecki , J. 2004 . Cloning of the thermostable α -amylase gene from Pyrococcus woesei in Escherichia coli. Isolation and some properties of the enzyme . Molecular Biotechnol , 26 : 101 – 109 . [CSA] [CROSSREF]
  • Gupta , M. N. 1991 . Thermostabilization of proteins . Biotechnol. Appl. Biochem , 14 : 1 – 11 . [CSA]
  • Guzman-Maldonado , H. and Paredes-Lopez , O. 1995 . Amylolytic enzymes and products derived from starch: a review . Crit. Rev. Food Sci. Nutrit , 35 : 373 – 403 . [CSA]
  • Huber , H. and Stetter , K. O. 1998 . Hyperthermophiles and their possible potential in biotechnology . J. Biotechnol , 64 : 39 – 52 . [CSA] [CROSSREF]
  • Jurado , E. , Camacho , F. , Luzon , G. and Vicaria , J. M. 2004 . Kinetic model of lactose hydrolysis in a hollow-fibre bioreactor . Chem. Engin. Sci , 59 : 397 – 405 . [CSA] [CROSSREF]
  • Kelly , C. T. and Fogarty , W. M. 1983 . Microbial α -glucosidases . Process Biochem , 18 : 6 – 12 . [CSA]
  • Kengen , S. W. , Luesink , E. V. , Stams , A. J. and Zehnder , A. J. 1993 . Purification and characterization of an extremely thermostable β -glucosidase from the hyperthermophilic archaeon Pyrococcus furiosus . Eur. J. Biochem , 213 : 305 – 312 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Kengen , S. W. and Stams , A. J. 1994 . An extremely thermostable β -glucosidase from the hyperthermphilic archaeon Pyrococcus furiosus; a comparison with other glycosidases . Biocatalysis , 11 : 79 – 88 . [CSA]
  • Kilbanov , A. M. 1982 . Stabilization of enzymes against thermal denaturation . Adv. Appl. Microbiol , 29 : 1 – 28 . [CSA]
  • Koch , R. , Spreinant , A. , Lemke , K. and Antranikian , G. 1991 . Purification and properties of a hyperthermoactive α-amylase from the archaebacterium Pyrococcus woesei . Arch. Microbiol , 155 : 572 – 578 . [CSA] [CROSSREF]
  • Laderman , K. A. , Asada , K. , Uemori , T. , Mukai , H. , Taguchi , Y , Kato , I. and Anfinsen , C. B. 1993 . α -Amylase from the hyperthermophilic archaebacterium Pyrococcus furiosus . J Biol. Chem , 268 : 24402 – 24407 . [PUBMED] [INFOTRIEVE] [CSA]
  • Ladero , M. , Perez , M. T. , Santos , A. and Garcia-Ochoa , F. 2002 . Hydrolysis of lactose by free and immobilized β -galactosidase from Thermus sp. strain T2 . Biotechnol. Bioeng , 81 : 241 – 252 . [CSA] [CROSSREF]
  • Ladero , M. , Santos , A. and Garcia-Ochoa , F. 2001 . Diffusion and chemical reaction rates with nonuniform enzyme distribution: an experimental approach . Biotechnol. Bioeng , 72 : 458 – 467 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Lasa , I. and Berenguer , J. 1993 . Thermophilic enzymes and their biotechnological potential . Microbiol. Sem , 9 : 77 – 89 . [CSA]
  • Legin , E. , Copinet , A. and Duchiron , F. 1998 . Production of the thermostable amylolytic enzymes by Thermococcus hydrothermalis . Biotechnol. Letters , 20 : 363 – 367 . [CSA] [CROSSREF]
  • Leveque , E. , Janecek , S. , Haye , B. and Belarbi , A . 2000 . Thermophilic archaeal amylolytic enzymes . Enzyme Microbial Technol , 26 : 3 – 14 . [CSA] [CROSSREF]
  • Lin , L. L. and Hsu , W. H. 1997 . Lactose-induced expression of Bacillus sp. TS-23 amylase gene in Escherichia coli regulated by a T7 promoter . Lett. Appl. Microbiol , 24 : 365 – 368 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Linden , A. , Niehaus , F. and Antranikian , G. 2000 . Single-step purification of a recombinant thermostable α -amylase after solubilization of the enzyme from insoluble aggregates . J. Chromatogr , 737 : 253 – 259 . [CSA]
  • Maciuńska , J. , Czyż , B. and Synowiecki , J. 1998 . Isolation and some properties of β -galactosidase from thermophilic bacterium Thermus thermophilus . Food Chem , 63 : 441 – 445 . [CSA] [CROSSREF]
  • Mahoney , R. R. 1998 . Galactosyl-oligosaccharide formation during lactose hydrolysis: a review . Food Chem , 63 : 147 – 154 . [CSA] [CROSSREF]
  • Madi , E. and Antranikien , E. 1989 . Identification of a starch degrading anaerobic thermophile producing thermostable α -amylase and pullulanase . Applied Mirobiol. Biotechnol , 30 : 422 – 425 . [CSA] [CROSSREF]
  • Mateo , C. , Abian , O. , Fernandez-Lafuente , R. and Guisan , J. M. 2000 . Increase in conformational stability of enzymes immobilized on epoxy-activated supports by favoring additional multipoint covalent attachment . Enzyme Microb. Technol , 26 : 509 – 515 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Nakao , M. , Nakayama , T. , Harada , M. , Kakudo , A. , Ikemoto , H. , Kobayashi , S. and Shibano , Y. 1994 . Purification and characterization of a Bacillus sp. SAM 1606 thermostable α -glucosidase with transglucosylation activity . Applied Microbiol. Biotechnol , 41 : 337 – 343 . [CSA] [CROSSREF]
  • Niehaus , F. , Bertoldo , C. , Kahler , M. and Antranikian , G. 1999 . Extremophiles as a source of novel enzymes for industrial applications . Appl. Microbiol. Biotechnol , 51 : 711 – 729 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Padey , A. , Nigam , P. , Soccol , C. R. , Soccol , V. T. , Singh , D. and Mohan , R. 2000 . Advances in microbial amylases . Biotechnol. Appl. Biochem , 31 : 135 – 152 . [CSA] [CROSSREF]
  • Pessela , B. C. , Mateo , C. , Fuentes , M. , Vian , A. , Garcia , J. L. , Carrascosa , A. V. , Guisan , J. M. and Fernandez-Lafuente , R. 2003 . The immobilization of a thermophilic β -galactosidase on Sepabeads supports decreases products inhibition. Complete hydrolysis of lactose in dairy products . Enzyme Microbial Technol , 33 : 199 – 205 . [CSA] [CROSSREF]
  • Pessela , B. C. , Fernandez-Lafuente , R. , Fuentes , M. , Vian , A. , Garcia , J. L. , Carrascosa , A. V. , Mateo , C. and Guisan , J. M. 2003 . Reversible immobilization of a thermophilic β -galactosidase via ionic adsorption on PEI-coated Sepabeads . Enzyme Microb. Technol , 32 : 369 – 374 . [CSA] [CROSSREF]
  • Pessela , B. C. , Torres , R. , Fuentes , M. , Mateo , C. , Filho , M. , Carrascosa , A. V. , Vian , A. , Garcia , J. L. , Guisan , J. M. and Fernandez-Lafuente , R. 2004 . A simple strategy for the purification of large thermophilic proteins overexpressed in mesophilic microorganisms: Application to multimeric enzymes from Thermus sp. strain T2 expressed in Escherichia coli . Biotechnol. Prog , 20 : 1507 – 1511 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Pessela , B. C. , Torres , R. , Fuentes , M. , Mateo , C. , Munilla , R. , Vian , A. , Carrascosa , A. , Garcia , J. L. , Giusan , J. M. and Fernandez-Lafuente , R. 2004 . Selecive and mild adsorption of large proteins on lowly activated immobilized metal ion affinity chromatography matrices. Purification of multimeric thermophilic enzymes overexpressed in Escherichia coli . J. Chromatog , 1055 : 93 – 98 . [CSA] [CROSSREF]
  • Petzelbauer , I. , Kuhn , B. , Splechtna , B. , Kulbe , K. D. and Nidetzky , B. 2002 . Development of an ultrahigh-temperature process for the enzymatic hydrolysis of lactose. IV. Immobilization of two thermostable β -glycosidases and optimization of a packed-bed reactor for lactose conversion . Biotechnol. Bioeng , 77 : 619 – 631 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Pisani , F. M. , Rella , R. , Raja , A. , Nucci , R. , Gambacorta , A. , De Rosa , M. and Rossi , M. 1990 . Thermostable β -galactosidase from the archaebacterium Sulfolobus solfataricus: purification and properties . Eur. J. Biochem , 187 : 321 – 328 . [PUBMED] [INFOTRIEVE] [CSA]
  • Porath , J. , Carlsson , J. , Olsson , I. and Belfrage , G. 1975 . Metal chelate affinity chromatography, a new approach to protein fractionation . Nature , 258 : 598 – 599 . [PUBMED] [INFOTRIEVE] [CSA]
  • Rolfsmeier , M. and Blum , P. 1995 . Purification and characterization of maltase from the extremely thermophilic crenarchaeote Sulfolobus solfataricus . J. Bacteriol , 177 : 482 – 485 . [PUBMED] [INFOTRIEVE] [CSA]
  • Saha , B. C. and Zeikus , J. G. 1991 . Characterization of thermostable α -glucosidase from Clostridium thermohydrosulphuricum 39E . Applied Microbiol. Biotechnol , 35 : 568 – 571 . [CSA]
  • Sakhamuru , K. , Hough , D. W. and Chaudhuri , J. B. 2000 . Protein purification by ultrafiltration using a β -galactosidase fusion tag . Biotechnol. Prog , 16 : 296 – 298 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Sellek , G. A. and Chaudhuri , J. B. 1999 . Biocatalysis in organic media using enzymes from extremophiles . Enzymes Microb. Technol , 25 : 471 – 482 . [CSA] [CROSSREF]
  • Shukla , T. P. 1975 . Beta-galactosidase technology: A solution to the lactose problem . CRC Crit. Rev. Food Technol , 5 : 325 – 356 . [CSA]
  • Splechina , B. , Petzelbauer , I. , Kuhn , B. , Kulbe , K. D. and Nidetzky , B. 2002 . Hydrolysis of lactose by β -galactosidase CelB from hyperthermophilic archaeon Pyrococcus furiosus . Applied Biochem. Biotechnol , 98 : 473 – 488 . [CSA] [CROSSREF]
  • Sunna , A. , Moracci , M. , Rossi , M. and Antranikian , G. 1997 . Glycosyl hydrolases from hyperthermophiles . Extremophiles , 1 : 2 – 13 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Synowiecki , J. 1998 . Preparation, properties and suitability of thermostable enzymes (in Polish) . Biotechnologia , 42 : 98 – 105 . [CSA]
  • Synowiecki , J. and Maciuñska , J. 2002 . Isolation and some properties of the thermostable β -galactosidase of Pyrococcus woesei expressed in Escherichia coli . J. Food Biochem , 26 : 49 – 62 . [CSA]
  • Synowiecki , J. and Grzybowska , B . 2000 . Suitability of thermostable enzymes for improved starch processing (in Polish) . Biotechnologia , 53 : 18 – 27 . [CSA]
  • Takesawa , Y. , Covan , D. , Bonnerjea , J. and Hoare , M. 1990 . Heat induced precipitation of cell homogenates: An investigation of the recovery of thermostable proteins . Enzyme Microb. Technol , 12 : 184 – 189 . [CSA] [CROSSREF]
  • Ulezlo , I. V. , Tsereteli , A. K. , Portnaya , I. B. and Bezborodov , A. M. 2001 . β -Galactosidase of the extreme thermophilic anaerobic bacterium Thermoanaerobium sp. 2905 and its immobilization . Applied Biochem. Microbiol , 37 : 41 – 44 . [CSA] [CROSSREF]
  • Vieille , C. and Zeikus , G. J. 2001 . Hyperthermophilic enzymes: sources, uses, and molecular mechanisms for thermostability . Microbiol. Molec. Biology Rev , 65 : 1 – 43 . [CSA] [CROSSREF]
  • Weetal , H. H. 1993 . Preparation of immobilized proteins covalently coupled through silane coupling agents to inorganic supports . Appl. Biochem. Biotechnol , 41 : 157 – 188 . [CSA]
  • Zdziebło , A. and Synowiecki , J. 2002 . New source of thermostable α -glucosidase suitable for single step starch processing . Food Chem , 79 : 485 – 491 . [CSA] [CROSSREF]
  • Zdziebło , A. and Synowiecki , J. Production of trehalose by intramolecular transglucosylation of maltose catalyzed by a new enzyme from Thermus thermophilus HB-8 . Food Chem , (in press)[CSA]
  • Zeikus , G. J. , Vieille , C. and Savchenko , A. 1998 . Thermozymes: biotechnology and structure-function relationships . Extremophiles , 2 : 179 – 183 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]

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