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European Journal of Biochemistry|February 1, 1997
Derepression of gene expression mediated by the 5' upstream region of the isocitrate lyase gene of Candida tropicalis is controlled by two distinct regulatory pathways in Saccharomyces cerevisiaeK Umemura, H Atomi, T Kanai, et al.Applied Microbiology and Biotechnology|February 1, 1996
A novel heterologous gene expression system in Saccharomyces cerevisiae using the isocitrate lyase gene promoter from Candida tropicalisT Kanai, H Atomi, K Umemura, et al.Journal of Biochemistry|June 1, 1992
Beta-oxidation of butyrate, the short-chain-length fatty acid, occurs in peroxisomes in the yeast Candida tropicalisT Kurihara, M Ueda, H Okada, et al.Applied Microbiology and Biotechnology|March 17, 1999
Development of an arming yeast strain for efficient utilization of starch by co-display of sequential amylolytic enzymes on the cell surfaceT Murai, M Ueda, Y Shibasaki, et al.Archives of Microbiology|November 10, 2001
Novel and convenient methods for Candida tropicalis gene disruption using a mutated hygromycin B resistance geneA Hara, M Arie, T Kanai, et al.Applied Microbiology and Biotechnology|August 22, 2000
Construction of an engineered yeast with glucose-inducible emission of green fluorescence from the cell surfaceK Ye, S Shibasaki, M Ueda, et al.Applied Microbiology and Biotechnology|June 12, 2001
Quantitative evaluation of the enhanced green fluorescent protein displayed on the cell surface of Saccharomyces cerevisiae by fluorometric and confocal laser scanning microscopic analysesS Shibasaki, M Ueda, T Iizuka, et al.Applied Microbiology and Biotechnology|July 12, 2002
An arming yeast with the ability to entrap fluorescent 17beta-estradiol on the cell surfaceM Yasui, S Shibasaki, K Kuroda, et al.Applied Microbiology and Biotechnology|January 10, 2002
Intelligent yeast strains with the ability to self-monitor the concentrations of intra- and extracellular phosphate or ammonium ion by emission of fluorescence from the cell surfaceS Shibasaki, Y Ninomiya, M Ueda, et al.Applied and Environmental Microbiology|December 24, 1997
Recombinant thermostable cycloinulo-oligosaccharide fructanotransferase produced by Saccharomyces cerevisiaeT Kanai, N Ueki, T Kawaguchi, et al.Pageof 340