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26821“…The substrate specificities of these UGTs are now beginning to be established and will provide a foundation for further analysis of this large enzyme superfamily as well as a platform for future biotechnological applications.…”
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26822por Herrmann, Lutz, Erkelenz, Michael, Aldag, Ingo, Tiedtke, Arno, Hartmann, Marcus WW“…BACKGROUND: Over the last decades molecular biologic techniques have been developed to alter the genome and proteome of Tetrahymena thermophila thereby providing the basis for recombinant protein expression including functional human enzymes. The biotechnological potential of Tetrahymena has been proved in numerous publications, demonstrating fast growth, high biomass, fermentation in ordinary bacterial/yeast equipment, up-scalability, existence of cheap and chemical defined media. …”
Publicado 2006
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26823“…These results suggest that proteomics is playing an important role not only in biological research but also in various biotechnological applications.…”
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26824“…This disaccharide has many biotechnological applications, as its physicochemical properties allow it to be used to preserve foods, enzymes, vaccines, cells etc., in a dehydrated state at room temperature. …”
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26825“…Ultimately, it will be possible to integrate these approaches and realize the vision of integrative synthetic biology when cells are completely rewired for biotechnological goals. This review will highlight progress towards this goal as well as areas requiring further research.…”
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26826por Pfrimer, Pollyana, de Moraes, Lidia Maria Pepe, Galdino, Alexsandro Sobreira, Salles, Loise Pedrosa, Reis, Viviane Castelo Branco, De Marco, Janice Lisboa, Prates, Maura Vianna, Bloch, Carlos, Torres, Fernando Araripe Gonçalves“…In order to produce this enzyme in large quantities for biotechnological purposes, the gene coding for the Bacillus subtilis urate oxidase was cloned and heterologously expressed in Escherichia coli. …”
Publicado 2010
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26827por Koutinas, Athanasios A., Sypsas, Vasilios, Kandylis, Panagiotis, Michelis, Andreas, Bekatorou, Argyro, Kourkoutas, Yiannis, Kordulis, Christos, Lycourghiotis, Alexis, Banat, Ibrahim M., Nigam, Poonam, Marchant, Roger, Giannouli, Myrsini, Yianoulis, Panagiotis“…However, its potential for further biotechnological development is unexploited. This study reports the characterization of this tubular/porous cellulosic material, which was done by SEM, porosimetry and X-ray powder diffractometry. …”
Publicado 2012
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26828“…Distinguishing mutations that determine an organism's phenotype from (near-) neutral ‘hitchhikers’ is a fundamental challenge in genome research, and is relevant for numerous medical and biotechnological applications. For human influenza viruses, recognizing changes in the antigenic phenotype and a strains' capability to evade pre-existing host immunity is important for the production of efficient vaccines. …”
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26829por Lo, Wei-Cheng, Wang, Li-Fen, Liu, Yen-Yi, Dai, Tian, Hwang, Jenn-Kang, Lyu, Ping-Chiang“…In this work, we implement that method into an efficient and user-friendly web server named CPred (CP site predictor), which is supposed to be helpful to promote fundamental researches and biotechnological applications of CP. The CPred is accessible at http://sarst.life.nthu.edu.tw/CPred.…”
Publicado 2012
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26830por Lynch, Erin A., Langille, Morgan G. I., Darling, Aaron, Wilbanks, Elizabeth G., Haltiner, Caitlin, Shao, Katie S. Y., Starr, Michael O., Teiling, Clotilde, Harkins, Timothy T., Edwards, Robert A., Eisen, Jonathan A., Facciotti, Marc T.“…The unique physiological properties of these organisms also make them good candidates for novel enzyme discovery for biotechnological applications. Seven genomes were sequenced to ∼20×coverage and assembled to an average of 50 contigs (range 5 scaffolds - 168 contigs). …”
Publicado 2012
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26831por Certo, Michael T., Ryu, Byoung Y., Annis, James E., Garibov, Mikhail, Jarjour, Jordan V., Rawlings, David J., Scharenberg, Andrew M.“…Site-specific genome engineering technologies are increasingly important tools in the post-genomic era, where biotechnological objectives often require organisms with precisely modified genomes. …”
Publicado 2011
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26832“…Bacterial production of polyunsaturated fatty acids (PUFAs) is a potential biotechnological approach for production of valuable nutraceuticals. …”
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26833“…These enzymes are already used in many biotechnological applications requiring high activity at mild temperatures or fast heat-inactivation rate. …”
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26834“…We recently identified and functionally characterized by complementation studies in yeast and Arabidopsis the gene encoding the calcineurin-interacting protein kinase of the SOS pathway in tomato, SlSOS2.(1) We also show evidences on the biotechnological potential of SlSOS2 conferring salt tolerance to transgenic tomato. …”
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26835por Costa, Margarida, Costa-Rodrigues, João, Fernandes, Maria Helena, Barros, Piedade, Vasconcelos, Vitor, Martins, Rosário“…Marine cyanobacteria have been considered a rich source of secondary metabolites with potential biotechnological applications, namely in the pharmacological field. …”
Publicado 2012
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26836por Roume, Hugo, EL Muller, Emilie, Cordes, Thekla, Renaut, Jenny, Hiller, Karsten, Wilmes, Paul“…To prove the broad applicability of the methodology, we applied it to microbial consortia of biotechnological, environmental and biomedical research interest. …”
Publicado 2013
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26837“…Emerging concepts for on-chip biotechnologies aim to replace microfluidic flow by active, molecular-motor driven transport of cytoskeletal filaments, including applications in bio-simulation, biocomputation, diagnostics, and drug screening. …”
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26838por Matsen, Janet B., Yang, Song, Stein, Lisa Y., Beck, David, Kalyuzhnaya, Marina G.“…Methane utilizing bacteria (methanotrophs) are important in both environmental and biotechnological applications, due to their ability to convert methane to multicarbon compounds. …”
Publicado 2013
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26839“…Although microalgal hydrogen evolution has received much interest for its biotechnological potential, its physiological role remains unclear. …”
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26840“…Reconstitution of membrane proteins in artificial membrane systems creates a platform for exploring their potential for pharmacological or biotechnological applications. Previously, we demonstrated amphiphilic block copolymers as promising building blocks for artificial membranes with long-term stability and tailorable structural parameters. …”
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