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Results: 1-12 |
Results: 12

Authors: Yamada-Okabe, H
Citation: H. Yamada-okabe, Use of genomics in drug discovery: Application to target identification, high-throughput screening and diagnosis, J PESTIC S, 26(3), 2001, pp. 305-308

Authors: Yamada-Okabe, T Sakamori, Y Mio, T Yamada-Okabe, H
Citation: T. Yamada-okabe et al., Identification and characterization of the genes for N-acetylglucosaminekinase and N-acetylglucosamine-phosphate deacetylase in the pathogenic fungusCandida albicans, EUR J BIOCH, 268(8), 2001, pp. 2498-2505

Authors: Yamada-Okabe, H
Citation: H. Yamada-okabe, On the zymogenic character of chitin synthase 3 - Authors' reply, MICROBIO-UK, 146, 2000, pp. 1761-1761

Authors: Mio, T Kokado, M Arisawa, M Yamada-Okabe, H
Citation: T. Mio et al., Reduced virulence of Candida albicans mutants lacking the GNA1 gene encoding glucosamine-6-phosphate acetyltransferase, MICROBIO-UK, 146, 2000, pp. 1753-1758

Authors: Ono, N Yabe, T Sudoh, M Nakajima, T Yamada-Okabe, T Arisawa, M Yamada-Okabe, H
Citation: N. Ono et al., The yeast Chs4 protein stimulates the trypsin-sensitive activity of chitinsynthase 3 through an apparent protein-protein interaction, MICROBIO-UK, 146, 2000, pp. 385-391

Authors: Mio, T Yamada-Okabe, T Arisawa, M Yamada-Okabe, H
Citation: T. Mio et al., Functional cloning and mutational analysis of the human cDNA for phosphoacetylglucosamine mutase: identification of the amino acid residues essentialfor the catalysis, BBA-GENE ST, 1492(2-3), 2000, pp. 369-376

Authors: Sudoh, M Yamazaki, T Masubuchi, K Taniguchi, M Shimma, N Arisawa, M Yamada-Okabe, H
Citation: M. Sudoh et al., Identification of a novel inhibitor specific to the fungal chitin synthase- Inhibition of chitin synthase 1 arrests the cell growth, but inhibition of chitin synthase 1 and 2 is lethal in the pathogenic fungus Candida albicans, J BIOL CHEM, 275(42), 2000, pp. 32901-32905

Authors: Sudoh, M Tatsuno, K Ono, N Ohta, A Chibana, H Yamada-Okabe, H Arisawa, M
Citation: M. Sudoh et al., The Candida albicans CHS4 gene complements a Saccharomyces cerevisiae skt5/chs4 mutation and is involved in chitin biosynthesis, MICROBIO-UK, 145, 1999, pp. 1613-1622

Authors: Yamada-Okabe, T Mio, T Kashima, Y Matsui, M Arisawa, M Yamada-Okabe, H
Citation: T. Yamada-okabe et al., The Candida albicans gene for mRNA 5 '-cap methyltransferase: identification of additional residues essential far catalysis, MICROBIO-UK, 145, 1999, pp. 3023-3033

Authors: Mio, T Yamada-Okabe, T Arisawa, M Yamada-Okabe, H
Citation: T. Mio et al., Saccharomyces cerevisiae GNA1, an essential gene encoding a novel acetyltransferase involved in UDP-N-acetylglucosamine synthesis, J BIOL CHEM, 274(1), 1999, pp. 424-429

Authors: Yamada-Okabe, T Mio, T Ono, N Kashima, Y Matsui, M Arisawa, M Yamada-Okabe, H
Citation: T. Yamada-okabe et al., Roles of three histidine kinase genes in hyphal development and virulence of the pathogenic fungus Candida albicans, J BACT, 181(23), 1999, pp. 7243-7247

Authors: Yabe, T Yamada-Okabe, T Nakajima, T Sudoh, M Arisawa, M Yamada-Okabe, H
Citation: T. Yabe et al., Mutational analysis of chitin synthase 2 of Saccharomyces cerevisiae - Identification of additional amino acid residues involved in its catalytic activity, EUR J BIOCH, 258(3), 1998, pp. 941-947
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