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Construction of the combinatorial library of Rhizopus oryzae lipase mutated in the lid domain by displaying on yeast cell surface
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Enhanced reactivity of Rhizopus oryzae lipase displayed on yeast cell surface in organic solvents: Potential as a whole cell biocatalyst in organic solvents
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Shiraga, S., Kawakami, M., Ishiguro, M. & Ueda, M. (2005). Enhanced reactivity of Rhizopus oryzae lipase displayed on yeast cell surface in organic solvents: Potential as a whole cell biocatalyst in organic solvents. Appl Environ Microbiol, 71, 4335-4338.
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Creation of Rhizopus oryzae lipase having a unique oxyanion hole by combinatorial mutagenesis in the lid domain
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Shiraga, S., Ishiguro, M., Fukami, H., Nakao, M. & Ueda, M. (2005). Creation of Rhizopus oryzae lipase having a unique oxyanion hole by combinatorial mutagenesis in the lid domain. Appl Microbiol Biotechnol, 68, 779-785.
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Enhancement of substrate recognition ability by combinatorial mutation of beta-glucosidase displayed on the yeast cell surface
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Fukuda, T., Kato, M., Kadonosono, T., Sahara, H., Hata, Y., Suye, S. & Ueda, M. (2007). Enhancement of substrate recognition ability by combinatorial mutation of beta-glucosidase displayed on the yeast cell surface. Appl Microbiol Biotechnol, 76, 1027-1033.
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Construction of a selective cleavage system for a protein displayed on the cell surface of yeast
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Kato, M., Maeda, H., Kawakami, M., Shiraga, S. & Ueda, M. (2005). Construction of a selective cleavage system for a protein displayed on the cell surface of yeast. Appl Microbiol Biotechnol, 69, 423-427.
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Substrate specificity of rat brain neurolysin disclosed by molecular display system and putative substrates in rat tissues
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Kadonosono, T., Kato, M. & Ueda, M. (2007). Substrate specificity of rat brain neurolysin disclosed by molecular display system and putative substrates in rat tissues. Appl Microbiol Biotechnol, 75, 1353-1360.
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Metallopeptidase, neurolysin, as a novel molecular tool for analysis of properties of cancerproducing matrix metalloproteinases-2 and 9
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Kadonosono, T., Kato, M. & Ueda, M. (2007). Metallopeptidase, neurolysin, as a novel molecular tool for analysis of properties of cancerproducing matrix metalloproteinases-2 and 9. Appl Microbiol Biotechnol, 75, 1285-1291.
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Alteration of substrate specificity of rat neurolysin from matrix metalloproteinase-2/9-type to - 3-type specificity by comprehensive mutation
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Kadonosono, T., Kato, M. & Ueda, M. (2008). Alteration of substrate specificity of rat neurolysin from matrix metalloproteinase-2/9-type to - 3-type specificity by comprehensive mutation. Protein Eng Des Sel, 21, 507-513.
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Construction of combinatorial library of the starch-binding domain of Rhizopus oryzae glucoamylase and screening of clones with enhanced activity by yeast display method
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Shiraga, S., Kawakami, M. & Ueda, M. (2004). Construction of combinatorial library of the starch-binding domain of Rhizopus oryzae glucoamylase and screening of clones with enhanced activity by yeast display method. J Mol Catalys, 28, 229-234.
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Isolation of novel catalytic antibody clones from combinatorial library displayed on yeast-cell surface
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Lin, Y., Shiraga, S., Tsumuraya, T., Matsumoto, T., Kondo, A., Fujii, I. & Ueda, M. (2004). Isolation of novel catalytic antibody clones from combinatorial library displayed on yeast-cell surface. J Mol Catalys, 28, 247-252.
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Improvement of cellulose-degrading ability of a yeast strain displaying Trichoderma reesei endoglucanase II by recombination of cellulasebinding domains
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Ito, J., Fujita, Y., Ueda, M., Fukuda, H. & Kondo, A. (2004). Improvement of cellulose-degrading ability of a yeast strain displaying Trichoderma reesei endoglucanase II by recombination of cellulasebinding domains. Biotechnol Prog, 20, 688-691.
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Design of a serine protease-like catalytic triad on an antibody light chain displayed on the yeast cell surface
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Okochi, N., Kato, M., Kadonosono, T. & Ueda, M. (2007). Design of a serine protease-like catalytic triad on an antibody light chain displayed on the yeast cell surface. Appl Microbiol Biotechnol, 77, 597-603.
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Construction of novel single cell screening system using a yeast cell chip for nano-sized modified-proteindisplaying libraries
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Fukuda, T., Shiraga, S., Kato, M., Morita, Y., Tamiya, E., Hori, T., Suye, S. & Ueda, M. (2005). Construction of novel single cell screening system using a yeast cell chip for nano-sized modified-proteindisplaying libraries. Nanobiotechnology, 1, 105-111.
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Construction of cultivation system of a yaset single cell in a cell chip chamber
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Fukuda, T., Shiraga, S., Kato, M., Suye, S. & Ueda, M. Construction of cultivation system of a yaset single cell in a cell chip chamber. (2006). Biotechnol Prog, 22, 944-948.
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Enhancement of cellulase activity by the clones selected from the combinatorial library of the cellulose-binding domain by cell surface engineering
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Fukuda, T., Ishikawa, T., Ogawa, M., Shiraga, S., Kato, M., Suye, S. & Ueda, M. (2006). Enhancement of cellulase activity by the clones selected from the combinatorial library of the cellulose-binding domain by cell surface engineering. Biotechnol Prog., 22, 933-938.
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Development of high-throughput screening system by single cell reaction using microchamber array chip
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Fukuda, T., Kato, M., Suye, S. & Ueda, M. (2007). Development of high-throughput screening system by single cell reaction using microchamber array chip. J Biosci Bioeng, 104, 241-243.
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Screening of a molecule endowing Saccharomyces cerevisiae with n-nonane-tolerance from a combinatorial random protein library
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Zou, W., Ueda, M. & Tanaka, A. (2002). Screening of a molecule endowing Saccharomyces cerevisiae with n-nonane-tolerance from a combinatorial random protein library. Appl Microbiol Biotechnol, 58, 806-812.
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Creation of a novel peptide endowing yeasts with acid tolerance using yeast cell-surface engineering
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Matsui, K., Kuroda, K. & Ueda, M. (2009). Creation of a novel peptide endowing yeasts with acid tolerance using yeast cell-surface engineering. Appl Microbiol Biotechnol, 82, 105-113.
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