Nakagawa, T., Abe, H., Gessei, T., Takeda, K., Igarashi, K., Nakamura, N., Biorefinery of galacturonic acid using a biofuel cell as a reactor, Reaction Chemistry & Engineering, 7: 2629-2635 (2022)
Uchiyama, T., Uchihashi, T., Ishida, T., Nakamura, A., Vermaas, J. V., Crowley, M. F., Samejima, M., Beckham, G. T., & Igarashi, K. (2022). ‘Lytic polysaccharide monooxygenase increases cellobiohydrolases activity by promoting decrystallization of cellulose surface.’, Science advances, 8(51), eade5155. https://www.science.org/doi/10.1126/sciadv.ade5155
Kojima, K., Sunagawa, N., Yoshimi, Y., et al. ‘Acetylated xylan degradation by glycoside hydrolase family 10 and 11 xylanases from the white-rot fungus Phanerochaete chrysosporium‘, J. Appl. Glycosci. 69(2): 35-43 (2022)
Kuga, T., Sunagawa, N., and Igarashi, K. ‘Enzymatic synthesis of cellulose in space: gravity is a crucial factor for building cellulose II gel structure’ Cellulose 29(5), 2999–3015 (2022) https://doi.org/10.1007/s10570-021-04399-0
Kojima, K., Sunagawa, N., Mikkelsen, et al. ‘Comparison of glycoside hydrolase family 3 β-xylosidases from basidiomycetes and ascomycetes reveals evolutionarily distinct xylan degradation systems’ J. Biol. Chem. 298(3), (2022)101670. https://doi.org/10.1016/j.jbc.2022.101670
Okmane, L., Nestor, G., Jakobsson, et al. ‘Glucomannan and beta-glucan degradation by Mytilus edulis Cel45A: Crystal structure and activity comparison with GH45 subfamily A, B and C’ Carbohydrate polymers, 277, 118771.(2022) https://doi.org/10.1016/j.carbpol.2021.118771
Katsuhara, S., Takagi, Y., Sunagawa, N.,et al. ‘Enhanced self-assembly and mechanical properties of cellulose-based triblock copolymers: comparisons with amylose-based triblock copolymers’ ACS Sustain. Chem. Eng. 9(29) 9779-9788 (2021) DOI: 10.1021/acssuschemeng.1c02180
Nakamura, A., Kanazawa, T. Furuta, T., et al. ‘Role of tryptophan 38 in loading substrate chain into the active-site tunnel of cellobiohydrolase I from Trichoderma reesei ‘ J. Appl. Glycosci. 68(1): 19-29 (2021)
Takeda, K., Kusuoka, R., Inukai, M.,et al. ‘An amperometric biosensor of L-fucose in urine for the first screening test of cancer’ Biosens. Bioelectron. 174: 112831 (2021)
Yamaguchi, S., Sunagawa, N., Matsuyama, K., et al. ‘Preparation of large-volume crystal of cellulase under microgravity to investigate the mechanism of thermal stabilization’ Int. J. Micrograv. Sci. Appl. 38(1): (2021)
Kohno, M., Arakawa, T., Sunagawa, N., et al. ‘Molecular analysis of cyclic α-maltosyl-(1→6)-maltose binding protein in the bacterial metabolic pathway’ PLoS One 15(11): e0241912 (2020)
Matsuyama, K., Kishine, N., Fujimoto, Z., et al. ‘Unique active site and subsite features in the arabinogalactan-degrading GH43 exo-β-1,3-galactanase from Phanerochaete chrysosporium‘ J. Biol. Chem. 295(52): 18539-18552 (2020)
Pylkkänen, R., Mohammadi, P., Arola, S., et al. ‘In vitro synthesis and self-assembly of cellulose II nanofibrils catalyzed by the reverse reaction of Clostridium thermocellum cellodextrin phosphorylase’ Biomacromolecules 21(10): 4355-4364 (2020)
Nakamura, A., Ishiwata, D., Visootsat, A., et al. ‘Domain architecture divergence leads to functional divergence in binding and catalytic domains of bacterial and fungal cellobiohydrolases’ J. Biol. Chem. 295(43): 14606-14617 (2020)
Takeda, K., Kusuoka, R., Birrell, J. A., et al. ‘Bioelectrocatalysis based on direct electron transfer of fungal pyrroloquinoline quinone-dependent dehydrogenase lacking the cytochrome domain’ Electrochim. Acta 359: 136982 (2020)
Matsuyama, K., Kondo, T., Igarashi, K., et al. ‘Analysis of substrate-recognition mechanism of tomato β-galactosidase 4 using X-ray crystallography and docking simulation’ Planta 252(4): 72 (2020)
Uchiyama, T., Uchihashi, T., Nakamura, A., et al. ‘Convergent evolution of processivity in bacterial and fungal cellulases’ Proc. Nat. Acad. Sci. U.S.A. 117 (33) 19896-19903 (2020)
Matsuyama, K., Sunagawa, N., and Igarashi, K., ‘Mutation of cysteine residues increases heterologous expression of peach expansin in the methylotrophic yeast Pichia pastoris‘ Plant Biotechnol. 37(4): 397-403 (2020)
Yamaguchi, S., Sunagawa, N., Tachioka, M., et al. ‘Thermostable mutants of glycoside hydrolase family 6 cellobiohydrolase from the basidiomycete Phanerochaete chrysosporium‘ J. Appl. Glycosci. 67: 79-86 (2020)
Fujii, T., Igarashi, K., and Samejima, M., ‘Single amino Acid mutation of pyranose 2-oxidase results in increased specificity for diabetes biomarker 1,5-anhydro-D-glucitol’ J. Appl. Glycosci. 67: 73-78 (2020)
Miyake, M., Terada, T., Shimokawa, M., et al. ‘Structural analysis of β-L-arabinobiose-binding protein in the metabolic pathway of hydroxyproline-rich glycoproteins in Bifidobacterium longum‘ FEBS J. doi: 10.1111/febs.15315 (2020)
Igarashi, K., Kaneko, S., Kitaoka, M., et al. ‘Effect of C-6 methylol groups on substrate recognition of glucose/xylose mixed oligosaccharides by cellobiose dehydrogenase from the basidiomycete Phanerochaete chrysosporium‘ J. Appl. Glycosci. 67: 51-57 (2020)
de Ruijter, J. C., Igarashi, K., and Penttilä, M., ‘The Lipomyces starkeyi gene Ls120451 encodes a cellobiose transporter that enables cellobiose fermentation in Saccharomyces cerevisiae‘ FEMS Yeast Res. foaa019, https://doi.org/10.1093/femsyr/foaa019 (2020)
Tsutsui, S., Sakuragi, K., Igarashi, K., et al. ‘Evaluation of ammonia pretreatment for enzymatic hydrolysis of sugarcane bagasse to recover xylooligosaccharides’ J. Appl. Glycosci. 67: 17-22 (2020)
Takeda, K., Ishida, T., Yoshida, M., et al. ‘The Crystal Structure of the catalytic domain and the cytochrome b domain in a eukaryotic PQQ-dependent dehydrogenase’ Appl. Environ. Microbiol. 85: e01692-19 (2019)
Ezaki, T., Nishinari, K., Samejima, M., et al. ‘Bridging the Micro-Macro Gap between Single-Molecular Behavior and Bulk Hydrolysis Properties of Cellulase’ Phys. Rev. Lett. 122, 9, 5 p., 098102 (2019)
Kumakura, K., Hori, C., Matsuoka, H., et al. ‘Protein components of water extracts from fruiting bodies of the Reishi mushroom Ganoderma lucidum contribute to the production of functional molecules’ J. Sci. Food Agric. 99(2): 529-535 (2019)
Sakuragi, K., Hori, C., Igarashi, K., et al. ‘Secretome analysis of the basidiomycete Phanerochaete chrysosporium grown on ammonia-treated lignocellulosic biomass from birch wood’ J. Wood Sci. 64(6) 845-853 (2018)
Abe, K., Sunagawa, N., Terada, T., et al. ‘Structural and thermodynamic insights into β-1,2-glucooligosaccharide capture by a solute-binding protein in Listeria innocua‘ J. Biol. Chem. 293(23):8812-8828 (2018)
Sakuta, R., Takeda, K., Igarashi, K., et al. ‘Enzymes Suitable for Biorefinery to Coproduce Hexaric Acids and Electricity from Hexuronic Acids Derived from Biomass’ Energy Technol. 6(2): 273-279 (2018)
Kato, S., Hayashi, M., Kitagawa, M., et al. ‘Degradation pathway of plant complex-type N-glycans: Identification and characterization of a key α1,3-fucosidase from Glycoside Hydrolase Family 29’ Biochem. J. 475(1): 305-317 (2018) doi: 10.1042/BCJ20170106.
CAZypedia Consortium, Ten years of CAZypedia: a living encyclopedia of carbohydrate-active enzymes, Glycobiology 28(1): 3-8 (2018), doi: 10.1093/glycob/cwx089.
Komiya, D., Hori, A., Ishida, T., Igarashi, K., et al. ‘Crystal structure and substrate specificity modification of acetyl xylan esterase from Aspergillus luchuensis‘ Appl. Environ. Microbiol. 83(20): e01251-17(2017), DOI: 10.1128/AEM.01251-17
Harada, H., Onoda, A., Uchihashi, T., et al. ‘Interdomain flip‐flop motion visualized in flavocytochrome cellobiose dehydrogenase using high‐speed atomic force microscopy during catalysis’ Chem. Sci. 8: 6561-6565 (2017)
Tachioka, M., Nakamura, A., Ishida, T., et al. ‘Crystal structure of family 6 cellobiohydrolase from the basidiomycete Phanerochaete chrysosporium‘ Acta Crysta. F 73: 398-403 (2017)
Shinohara, N., Sunagawa, N., Tamura, S., et al. ‘The plant enzyme AtXTH3 catalyses covalent crosslinking between cellulose and cellooligosaccharide’ Sci. Rep. 7: 46099 (2017)
Yamamoto, Y., Cheng, N., Koda, K., et al. ‘Association of amphipathic lignin derivatives with cellobiohydrolase groups improves enzymatic saccharification of lignocellulosics’ Cellulose 24: 1849-1862 (2017)
Yoshimi, Y., Sugawara, Y., Hori, C., et al. ‘A protease/peptidase from culture medium of Flammulina velutipes that acts on arabinogalactan-protein’ Biosci. Biotechnol. Biochem. 81: 475-481 (2017)
立岡美夏子、中村彰彦、石田卓也 他 ’水素原子の可視化を目指したセルラーゼの大型結晶作製’ Int. J. Microgravity Sci. Appl. 34(1):340108 (2017)
Sakuta, R., Takeda, K., Igarashi, K., et al. ‘Pyrroloquinoline quinone-dependent glucose dehydrogenase anode: Coproduction of galactaric acid and electricity’ J. Mol. Catal. B Enzym. 133: S76-S79 (2016)
Tachioka, M., Sugimoto, N., Nakamura, A., et al. ‘Development of simple random mutagenesis protocol for the protein expression systemin Pichia pastoris‘ Biotechnol. Biofuels 9: 199 (2016)
Nakamura, A., Tasaki, T., Ishiwata, D., et al. ‘Single-molecule Imaging analysis of binding, processive movement, and dissociation of cellobiohydrolase Trichoderma reesei Cel6A and its domains on crystalline cellulose’ J. Biol. Chem. 291: 22404-22413 (2016)
Kojima, Y., Várnai, A., Ishida, T., et al. ‘Characterization of an LPMO from the brown-rot fungus Gloeophyllum trabeum with broad xyloglucan specificity, and its action on cellulose-xyloglucan complexes’ Appl. Environ. Microbiol. 82: 6557-6572 (2016)
Takeda, K., Matsumura, H., Ishida, T., et al. ‘pH-dependent electron transfer reaction and direct bioelectrocatalysis of the quinohemoprotein pyranose dehydrogenase’ Biochem. Biophys. Res. Commun. 477: 369-373 (2016)
Nakamura, A., Ishida, T., Kusaka, K., et al. “Newton’s cradle” proton relay with amide-imidic acid tautomerization in inverting cellulase visualized by neutron crystallography’ Science Adv. 1: e1500263 (2015)
和田朋子、中田裕治、ディレック ドグ他 ’変性剤濃度勾配ゲル電気泳動法を用いた、トルコ・イェニカプ遺跡から発掘された新石器時代の出土樹木中に存在する微生物群の菌叢解析’保存科学Science for conservation (54), 171-183, (2015)
Sakuta, R., Takeda, K., Ishida, T., et al. ‘Multi-enzyme anode composed of FAD-dependent and NAD-dependent enzymes with a single ruthenium polymer mediator for biofuel cells’ Electrochem. Commun. 56: 75-78 (2015)
Takeda, K., Uchihashi, T., Watanabe, H., et al. ‘Real-Time Dynamic adsorption processes of cytochrome c on an electrode observed through electrochemical high-speed atomic force microscopy’ PLoS One 10: e0116685 (2015)
Umezawa, K., Takeda, K., Ishida, T., et al. ‘A novel pyrroloquinoline quinone-dependent 2-keto-D-glucose dehydrogenase from Pseudomonas aureofaciens‘ J. Bacteriol. 197: 1322-1329 (2015)
Takeda, K., Matsumura, H., Ishida, T., et al. ‘Characterization of a novel PQQ-dependent quinohemoprotein pyranose dehydrogenase from Coprinopsis cinerea classified into auxiliary activities family 12 in Carbohydrate-Active Enzymes’ PLoS One 10: e0115722 (2015)
Hori, C., Ishida, T., Igarashi, K., et al. ‘Analysis of the Phlebiopsis gigantea genome, transcriptome and secretome provides insight into its pioneer colonization strategies of wood’ PLoS Genetics 10: e1004759 (2014)
Tsukagoshi, H., Nakamura, A., Ishida, T., et al. ‘The GH26 β-mannanase RsMan26H from a symbiotic protist of the termite Reticulitermes speratus is an endo-processive mannobiohydrolase: heterologous expression and characterization’ Biochem. Biophys. Res. Commun. 452: 520-525 (2014)
Matsumura, H., Umezawa, K., Takeda, K., et al. ‘Discovery of a eukaryotic pyrroloquinoline quinone-dependent oxidoreductase belonging to a new auxiliary activity family in the database of carbohydrate-active enzymes’ PLoS One 9: e104851 (2014)
Suzuki, K., Hori, A., Thangudu, R. R., et al. ‘Crystal structure of a feruloyl esterase belonging to the tannase family: a disulfide bond connects the serine and histidine residues in a catalytic triad’ Proteins 82: 2857–2867 (2014)
Igarashi, K., Uchihashi, T., Uchiyama, T., et al. ‘Two-way traffic of glycoside hydrolase family 18 processive chitinases on crystalline chitin’ Nature Commun. 5: 3975 (2014)
Srimongkon, T., Ishida, T., Igarashi, K., et al. ‘Development of a bacterial culture system using a paper platform to accommodate media and an ink-jet printing to dispense bacteria’ Am. J. Biochem. Biotechnol. 10: 81-87 (2014)
Shibafuji, Y., Nakamura, A., Uchihashi, T., et al. ‘Single-molecule imaging analysis of elementary reaction steps of Trichoderma reesei cellobiohydrolase I (Cel7A) hydrolyzing crystalline cellulose Iα and IIII‘ J. Biol. Chem. 289: 14056-14065 (2014)
Nakamura, A., Watanabe, H., Ishida, T., et al. ‘Trade-off between processivity and hydrolytic velocity of cellobiohydrolases at the surface of crystalline cellulose’ J. Amer. Chem. Soc. 136: 4584–4592 (2014)
Takeda, K., Ishida, T., Samejima, M., et al. ‘Effect of amines as activators on the alcohol-oxidizing activity of pyrroloquinoline quinone-dependent quinoprotein alcohol dehydrogenase’ Biosci. Biotechnol. Biochem. 78: 1195–1198 (2014)
Tsukagoshi, H., Nakamura, A., Ishida, T., et al. ‘Structural and biochemical analyses of glycoside hydrolase family 26 β-mannanase from a symbiotic protist of the termite Reticulitermes speratus‘ J. Biol. Chem. 289: 10843-10852 (2014)
Hori, C., Gaskell, J., Igarashi, K., et al. ‘Temporal alterations in secretome of selective ligninolytic fungi Ceriporiopsis subvermispora during growth on aspen wood reveal its strategy of degrading lignocellulose’ Appl. Environ. Microbiol. 80: 2062-2070 (2014)
Nihira T., Saito Y., Nishimoto M., et al. ‘Discovery of cellobionic acid phosphorylase in cellulolytic bacteria and fungi’ FEBS Lett. 587: 3556-3561 (2013)
Takeda, K., Matsumura, H., Ishida, T., et al. ‘The two-step electrochemical oxidation of alcohols using a novel recombinant PQQ alcohol dehydrogenase as a catalyst for a bioanode’ Bioelectrochemistry 94: 75-78 (2013)
Hori, C., Gaskell, J., Igarashi, K., et al. ‘Genome-wide analysis of polysaccharides degrading enzymes in eleven white- and brown-rot Polyporales provides insight into mechanisms of wood decay’ Mycologia 105: 1412-1427 (2013)
Nakamura, A., Ishida, T., Fushinobu, S., et al. ‘Phase diagram-guided method for growth of a large crystal of glycoside hydrolase family 45 inverting cellulase suitable for neutron structural analysis’ J. Sync. Rad. 20: 859-863 (2013)
Fukuda, S., Uchihashi, T., Iino, R., et al. ‘High-speed atomic force microscope combined with single-molecule fluorescence microscope’ Rev. Sci. Instr. 84: 073706 (2013)
Nakamura, A., Tsukada, T., Auer, S., et al. ‘Tryptophan residue at active-site tunnel entrance of Trichoderma reesei cellobiohydrolase Cel7A is important to initiate degradation of crystalline cellulose’ J. Biol. Chem. 288: 13503-13510 (2013)
Wu, M., Beckham, G. T., Larsson, A. A., Ishida, T., Kim, S., et al. ‘Crystal structure and computational characterization of the lytic polysaccharide monooxygenase GH61D from the basidiomycota fungus Phanerochaete chrysosporium‘ J. Biol. Chem. 288: 12828-12839 (2013)
Iizuka, R., Toshimitsu, I., Tahara, K., et al. ‘Probing single-molecule enzymatic dynamics of β-glucosidase using zero-mode waveguides’ Biophys. J. 104: 178 (2013)
Winarni, I., Oikawa, C., Yamada, T., et al. ‘Improvement of enzymatic saccharification of unbleached cedar pulp with amphipathic lignin derivatives’ BioResources 8: 2195-2208 (2013)
Igarashi, K. and Samejima, M., ‘Single amino acid mutation around flavin cofactor changes pH-dependence of basidiomycete class I cellobiose dehydrogenase activity’ J. Appl. Glycosci. 60: 111-116 (2013)
Ortiz, R., Matsumura, H., Tasca, F., et al. ‘Deglycosylation of cellobiose dehydrogenases enhances direct electron transfer with electrodes’ Anal Chem. 84: 10315-10323 (2012)
Suzuki, H., MacDonald, J., Syed, K., et al. ‘Comparative genomics of the white-rot fungi, Phanerochaete carnosa and P. chrysosporium, to elucidate the genetic basis of the distinct wood types they colonize’ BMC Genomics 13: 444 (2012)
Sugimoto, N., Igarashi, K., Wada, M., et al. ‘Adsorption characteristics of fungal family 1 cellulose-binding domain from Trichoderma reesei cellobiohydrolase I on crystalline cellulose: Negative cooperative adsorption via a steric exclusion effect’ Langmuir 28: 14323-14329 (2012)
Matsumura, H., Ortiz, R., Ludwig, R., et al. ‘Direct electrochemistry of Phanerochaete chrysosporium cellobiose dehydrogenase covalently attached onto gold nanoparticle modified solid gold electrodes’ Langmuir 28: 10925-10933 (2012)
Floudas, D., Binder, M., Riley, R., et al. ‘The Paleozoic origin of enzymatic mechanisms for decay of lignin reconstructed using 31 fungal genomes’ Science 336: 1715-1719 (2012)
Igarashi, K., Maruyama, M., Nakamura, A., et al. ‘Degradation of crystalline celluloses by Phanerochaete chrysosporium cellobiohydrolase II (Cel6A) heterologously expressed in methylotrophic yeast Pichia pastoris‘ J. Appl. Glycosci. 59: 105-110 (2012)
Hori, C., Suzuki, H., Igarashi, K., et al. ‘Transcriptional response of cellobiose dehydrogenase gene to cello- and xylooligosaccharides in the basidiomycete Phanerochaete chrysosporium‘ Appl. Environ. Microbiol. 78: 3770-3773 (2012)
Fernandez-Fueyo, E., Ruiz-Duenas, F. J., Ferreira, P., et al. ‘Comparative genomics of Ceriporiopsis subvermispora and Phanerochaete chrysosporium provide insight into selective ligninolysis’ Proc. Nat. Acad. Sci. U.S.A. 109: 5458-5463 (2012)
Sugimoto, N., Igarashi, K., and Samejima, M., ‘Cellulose affinity purification of fusion proteins tagged with fungal family 1 cellulose-binding domain’ Prot. Expres. Purif. 82: 290-296 (2012)
Higashijima, K., Hori, C., Igarashi, K., et al. ‘First aid for flood-damaged paper using saltwater: The inhibiting effect of saltwater on mold growth’ Stud. Conserv.57: 164-171(2012)
Yakovleva, M., Buzas, O., Matsumura, H., et al. ‘A novel combined thermometric and amperometric biosensor for lactose determination based on immobilised cellobiose dehydrogenase’ Bioscens. Bioelectron. 31: 251-256 (2012)
Westereng, B., Ishida, T., Vaaje-Kolstad, G., et al. ‘The putative endoglucanase PcGH61D from Phanerochaete chrysosporium is a metal-dependent oxidative enzyme that cleaves cellulose’ PLoS One 6: e27807 (2011)
Igarashi, K., Uchihashi, T., Koivula, A., et al. ‘Traffic jams reduce hydrolytic efficiency of cellulase on cellulose surface’ Science 333: 1279-1282 (2011)
Kotake, T., Hirata, N., Degi, Y., et al. ‘Endo-β-1,3-galactanase from winter mushroom Flammulina velutipes‘ J. Biol. Chem. 286: 27848-27854 (2011)
Fujita, K., Nakamura, N., Murata, K., et al. ‘Electrochemical analysis of electrode-immobilized dehydrogenases in hydrated choline dihydrogen phosphate-type ionic liquid’ Electrochim. Acta 56: 7224-7227 (2011)
Hori, C., Igarashi, K., Katayama, A., et al. ‘Effects of xylan and starch on secretome of the basidiomycete Phanerochaete chrysosporium grown on cellulose’ FEMS Microbiol. Lett. 321: 14-23 (2011)
Tokuda, N., Igarashi, K., Shimamura, T., et al. ‘Cloning, expression and purification of the anion exchanger 1 homolog from the basidiomycete Phanerochaete chrysosporium‘ Prot. Expres. Purif. 79: 81-87 (2011)
Egusa, S., Kitaoka, T., Igarashi, K., et al. ‘Preparation and enzymatic behavior of surfactant-enveloped enzymes for glycosynthesis in nonaqueous aprotic media’ J. Mol. Cat. B, 67:225-230 (2010)
Takata, R., Tokita, K., Mori, S., et al. ‘Degradation of carbohydrate moieties of arabinogalactan-proteins by glycoside hydrolases from Neurospora crassa‘ Carbohydr. Res. 345:2516-2522 (2010)
Suzuki, H., Igarashi, K., and Samejima, M., ‘Cellotriose and cellotetraose as inducers of the genes encoding cellobiohydrolases in the basidiomycete Phanerochaete chrysosporium‘ Appl. Environ. Microbiol. 76:6164-6170 (2010)
Ishiguro, M., Hori, T., Ishida, T., et al. ‘Molecular cloning of cDNAs encoding two glycoside hydrolase family 7 cellobiohydrolases from the basidiomycete Flammulina velutipes‘ Plant Biotechnol. 27:273-281 (2010)
Tonozuka, T., Yoshida, M., Igarashi, K., et al. ‘Crystal structure of a glycoside hydrolase family 6 enzyme, CcCel6C, a cellulase constitutively produced by Coprinopsis cinerea‘ FEBS J. 277:1532-1542 (2010)
Vasur, J., Kawai, R., Jonsson, K. H. M., et al. ‘Synthesis of cyclic-β-glucan using Laminarinase 16A glycosynthase mutant from the basidiomycete Phanerochaete chrysosporium‘ J. Amer. Chem. Soc. 132:1724-1730 (2010)
Igarashi, K., Koivula, A., Wada, M., et al. ‘High-speed atomic force microscopy visualizes processive movement of Trichoderma reesei cellobiohydrolase I on crystalline cellulose’ J. Biol. Chem. 284:36186-36190 (2009)
Hiraishi, M., Igarashi, K., Kimura, S., et al. ‘Synthesis of highly ordered cellulose II in vitro using cellodextrin phosphorylase’ Carbohydr. Res. 344:2468-2473 (2009)
Ishida, T., Fujimoto, Z., Ichinose, H., et al. ‘Crystallization of selenomethionyl exo-β-1,3-galactanase from the basidiomycete Phanerochaete chrysosporium‘ Acta Crysta. F 65:1274-1276 (2009)
Suzuki, H., Igarashi, K., and Samejima, M., ‘Quantitative transcriptional analysis of the genes encoding glycoside hydrolase family 7 cellulase isozymes in the basidiomycete Phanerochaete chrysosporium‘ FEMS Microbiol. Lett. 299:159-165 (2009)
Kajisa, T., Igarashi, K., and Samejima, M., ‘The genes encoding glycoside hydrolase family 6 and 7 cellulases from the brown-rot fungus Coniophora puteana‘ J. Wood Sci. 55:376-380 (2009)
Liu, Y., Igarashi, K., Kaneko, S., et al. ‘Characterization of Glycoside Hydrolase Family 6 Enzymes from Coprinopsis cinerea‘ Biosci. Biotechnol. Biochem. 73:1432-1434 (2009)
Vasur, J., Kawai, R., Andersson, E., et al. ‘X-ray crystal structures of Phanerochaete chrysosporium Laminarinase 16A in complex with products from lichenin and laminarin hydrolysis’ FEBS J. 276:3858-3869 (2009)
Konno, N., Ishida, T., Igarashi, K., et al. ‘Crystal structure of polysaccharide lyase family 20 endo-β-1,4-glucuronan lyase from the filamentous fungus Trichoderma reesei ‘ FEBS Lett. 583:1323-1326 (2009)
Ishida, T., Fuhinobu, S., Kawai,R., et al. ‘Crystal structure of glycoside hydrolase family 55 β-1,3-glucanase from the basidiomycete Phanerochaete chrysosporium‘ J. Biol. Chem. 284:10100-10109 (2009)
Fujita, K., Nakamura, N., Igarashi,K., et al. ‘Hydrated ionic liquid: choline dihydrogen phosphate as a biocatalysis medium of cellobiose dehydrogenase’ Green Chem. 11: 351-354 (2009)
Konno, N., Igarashi, K., Habu, N., et al. ‘Cloning of cDNA encoding glucuronan lyase belonging to a novel polysaccharide lyase family from Trichoderma reesei ‘ Appl. Environ. Microbiol.75:101-107 (2009)
Igarashi, K., Ishida, T., Hori, C., et al. ‘Characterization of endoglucanase belonging to new subfamily of glycoside hydrolase family 45 from the basidiomycete Phanerochaete chrysosporium ‘ Appl. Environ. Microbiol. 74:5628-5634 (2008)
Suzuki, H., Igarashi, K., and Samejima, M., ‘Real-time quantitative analysis of carbon catabolite derepression of cellulolytic genes expressed in the basidiomycete Phanerochaete chrysosporium ‘ Appl. Microbiol. Biotechnol. 80:99-106 (2008)
Konishi, T., Kotake, T., Soraya, D., et al. ‘Properties of family 79 β-glucuronidases that hydrolyze β-glucuronosyl and 4-O-methyl-β-glucuronosyl residues of arabinogalactan-protein, Carbohydr. Res. 343:1191-1201 (2008)
Tsukada, T., Igarashi, K., Fushinobu, S., et al. ‘Role of subsite +1 residues in pH dependence and catalytic activity of the glycoside hydrolase family 1 β-glucosidase BGL1A from the basidiomycete Phanerochaete chrysosporium ‘ Biotechnol. Bioeng. 99:1295-1302 (2008)
Ishida, T., Yaoi, K., Hiyoshi,A., et al. ‘Substrate recognition by glycoside hydrolase family 74 xyloglucanase from the basidiomycete Phanerochaete chrysosporium ‘ FEBS J. 274:5727-5736 (2007)
Igarashi, K., Wada, M., and Samejima, M., ‘Activation of crystalline cellulose to cellulose IIII results in efficient hydrolysis by cellobiohydrolase’ FEBS J.274:1785-1792 (2007)
Asai, R., Nishino, T., Matsumura, T., et al. ‘Two mutations convert mammalian xanthine oxidoreductase to highly superoxide-productive xanthine oxidase’ J. Biochem.141:525-534 (2007)
Nijikken, Y., Tsukada, T., Igarashi, K., et al. ‘Crystal structure of intracellular family 1 β-glucosidase BGL1A from the basidiomycete Phanerochaete chrysosporium ‘ FEBS Lett. 581:1514-1520 (2007)
Vasur, J., Kawai, R., Larsson, A. M., et al. ‘X-ray crystallographic native sulfur SAD structure determination of laminarinase Lam16A from Phanerochaete chrysosporium ‘ Acta Crysta. D 62:1422-1429 (2006)
Tsukada, T., Igarashi, K., Yoshida, M., et al. ‘Molecular cloning and characterization of two intracellular β-glucosidases belonging to GH family 1 from the basidiomycete Phanerochaete chrysosporium ‘ Appl. Microbiol. Biotechnol. 73:807-814 (2006)
Igarashi, K., Wada, M., Hori, R., et al. ‘Surface density of cellobiohydrolase on crystalline celluloses: A critical kinetic parameter to evaluate enzymatic kinetics at a solid-liquid interface’ FEBS J. 273:2869-2878 (2006)
Yoon J. J., Igarashi, K., Kajisa, T., et al. ‘Purification, identification and molecular cloning of glycoside hydrolase family 15 glucoamylase from the brown-rot basidiomycete Fomitopsis palustris ‘ FEMS Microbiol. Lett. 259:288-294 (2006)
Kotake, T., Tsuchiya, K., Aohara, T., et al. ‘An α-L-arabinofuranosidase/β-D-xylosidase from immature seeds of radish (Raphanus sativus L.)’ J. Exp. Botany 57:2353-2362 (2006)
Kawai, R., Igarashi, K., and Samejima, M., ‘Cloning and heterologous expression of glycoside hydrolase family 55 β-1,3-glucanase from the basidiomycete Phanerochaete chrysosporium ‘ Biotechnol. Lett. 28:365-371(2006)
Kawai, R., Igarashi, K., Yoshida, M., et al. ‘Hydrolysis of β-1,3/1,6/-glucan by glycoside hydrolase family 16 endo-1,3(4)-β-glucanase from the basidiomycete Phanerochaete chrysosporium ‘ Appl. Microbiol. Biotechnol. 71:898-906 (2006)
Ichinose, H., Yoshida, M., Kotake, T., et al. ‘An exo-β-1,3-galactanase having a novel β-1,3-galactan-binding module from Phanerochaete chrysosporium ‘ J. Biol. Chem. 280:25820-25829 (2005)
Igarashi, K., Yoshida, M., Matsumura, H., et al. ‘Electron transfer chain reaction of the extracellular flavocytochrome cellobiose dehydrogenase from the basidiomycete Phanerochaete chrysosporium ‘ FEBS J. 272:2869-2877 (2005).
Kotake, T., Dina, S., Konishi, T., et al. ‘Molecular cloning of aβ-galactosidase from radish that specifically hydrolyzes β-(1->3)- and β-(1->6)-galactosyl residues of arabinogalactan protein’ Plant Physiol. 138:1563-1576 (2005)
Yoshida, M., Igarashi, K., Wada, M., et al. ‘Characterization of carbohydrate-binding cytochrome b562 from the white-rot fungus Phanerochaete chrysosporium: Evidence of novel redox networks in filamentous fungi’ Appl. Environ. Microbiol. 71:4548-4555 (2005)
Kawai, R., Igarashi, K., Ishii, T., et al. ‘Kinetics of substrate transglycosylation by glycoside hydrolase family 3 glucan 1,3-β-glucosidase from the white-rot fungus Phanerochaete chrysosporium ‘ Carbohydr. Res. 339:2851-2857 (2004)
Leimkuhler, S., Stockert, A. L., Igarashi, K., et al. ‘The role of active site glutamate residues in catalysis of Rhodobacter capsulatus xanthine dehydrogenase’ J. Biol. Chem. 279:40437-40444 (2004)
Kajisa, T., Yoshida, M., Igarashi, K., et al. ‘Characterization and molecular cloning of cellobiose dehydrogenase from the brown-rot fungus Coniophora puteana ‘ J. Biosci. Bioeng. 98:57-63 (2004)
Yoshida, M., Igarashi, K., Kawai, R., et al. ‘Differential transcription of β-glucosidase and cellobiose dehydrogenase genes in cellulose degradation by the basidiomycete Phanerochaete chrysosporium ‘ FEMS Microb. Lett. 235:177-182 (2004)
Igarashi, K., Tani, T., Kawai, R., et al. ‘Family 3 β-glucosidase from cellulose-degrading culture of the white-rot fungus Phanerochaete chrysosporium is a glucan 1,3-β-glucosidase’ J. Biosci. Bioeng. 95:572-576 (2003)
Kawai, R., Yoshida, M., Tani, T., et al. ‘Production and characterization of recombinant Phanerochaete chrysosporium β-glucosidase in the methylotrophic yeast Pichia pastoris ‘ Biosci. Biotechnol. Biochem. 67:1-7 (2003)
Yoshida, M., Ohira, T., Igarashi, K., et al. ‘Molecular cloning and characterization of a cDNA encoding cellobiose dehydrogenase from the wood-rotting fungus Grifola frondosa ‘ FEMS Microb. Lett. 217:225-230 (2002)
Igarashi, K., Momohara, I., Nishino, T., et al. ‘Kinetics of inter-domain electron transfer in flavocytochrome cellobiose dehydrogenase from the white-rot fungus Phanerochaete chrysosporium ‘ Biochem. J. 365:521-526 (2002)
Yoshida, M., Ohira, T., Igarashi, K., et al. ‘Production and characterization of recombinant Phanerochaete chrysosporium cellobiose dehydrogenase in the methylotrophic yeast Pichia pastoris ‘ Biosci. Biotechnol. Biochem. 65:2050-2057 (2001)
Shibutani, S., Igarashi, K., Samejima, M., et al. ‘Inhibition of Trichoderma cellulase activity by a stilbene glucoside from Picea glehnii bark’ J. Wood Sci. 47:135-140 (2001)
Igarashi, K., Verhagen M. F. J. M., Samejima, M., et al. ‘Cellobiose dehydrogenase from the fungi Phanerochaete chrysosporium and Humicola insolens: A flavohemoprotein from Humicola insolens contains 6-hydroxy-FAD as the dominant active cofactor’ J. Biol. Chem. 274:3338-3344 (1999)
Imai, T., Boisset, C., Samejima, M., et al. ‘Unidirectional processive action of cellobiohydrolase Cel7A on Valonia cellulose microcrystals’ FEBS Lett. 432:113-116 (1998)
Igarashi, K., Samejima, M., and Eriksson, K.-E. L., ‘Cellobiose dehydrogenase enhances Phanerochaete chrysosporium cellobiohydrolase I activity by relieving product inhibition’ Eur. J. Biochem. 253:101-106 (1998)
Samejima, M., Sugiyama, J., Igarashi, K., et al. ‘Enzymatic hydrolysis of bacterial cellulose’ Carbohydr. Res. 305:281-288 (1998)
Habu, N., Igarashi, K., Samejima, M., et al. ‘Enhanced production of cellobiose dehydrogenase in cultures of Phanerochaete chrysosporium supplemented with bovine calf serum’ Biotechnol. Appl. Biochem. 26:97-102 (1997)
Igarashi, K., Samejima, M., Saburi, Y., et al. ‘Localization of cellobiose dehydrogenase in cellulose-grown cultures of Phanerochaete chrysosporium ‘ Fungal Genet. Biol. 21:214-22 (1997)
Samejima, M., Ohkubo, T., Igarashi, K., et al. ‘The behaviour of Phanerochaete chrysosporium cellobiose dehydrogenase on adsorption to crystalline and amorphous celluloses’ Biotechnol. Appl. Biochem. 25:135-141 (1997)
Takeda, K., Yoshida, M., Igarashi, K., et al. ‘Discovery of a novel quinohemoprotein from a eukaryote and its application in electrochemical devices’ Bioelectrochemistry (in press) doi: 10.1016/j.bioelechem.2019.107372
Takeda, K., Umezawa, K., Várnai, A., et al. ‘Fungal PQQ-dependent dehydrogenases and their potential in biocatalysis’ Curr. Opin. Chem. Biol. 49: 113-121 (2019) Doi: 10.1016/j.cbpa.2018.12.001
Nakamura, A., Ishida, T., Samejima, M., and Igarashi, K., The use of neutron scattering to determine the functional structure of glycoside hydrolase, Curr. Opin. Struct. Biol. 40: 54-61. (2016) doi: 10.1016/j.sbi.2016.07.014
Igarashi, K., Wada, M., and Samejima, M. Kinetic analysis of cellobiohydrolase: Quantification of enzymatic reaction at a solid/liquid interface applying the concept of surface density Trends in Glycoscience and Glycotechnology 21巻117号 13-22頁(2009)
Sunagawa, N. and Igarashi, K., ‘Expression of recombinant fungal proteins in Pichia pastoris ‘ Encyclopedia of Mycology 2: 518-527 (2021) https://doi.org/10.1016/B978-0-12-819990-9.00020-2
Igarashi, K., Uchihashi, T., Koivula, A., et al. ‘Visualization of cellobiohydrolase I from Trichoderma reesei moving on crystalline cellulose using high-speed atomic force microscopy’ Methods in Enzymology 510:169-182 (2012)