Science

私の報文と参加した国際会議です。

My publication and the international meetings I attended.

 
Publications

Eyers, P. A., Liu, J. Nobuhiro R. Hayashi, Lewellyn, A. L., Gautier, J., and Maller, J. L. (2005) Regulation of the G2/M transition in Xenopus oocytes by the cAMP-dependent Protein kinase. J. Biol. Chem., 280: 24339-24346. 

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Nobuhiro R. Hayashi* and Igarashi, Y. (2002) ATP binding and hydrolysis and autophosphorylation of CbbQ encoded by the gene located downstream of RubisCO genes. Biochem. Biophys. Res. Commun., 290: 1434-1440.
* Corresponding author

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Terazono K., Nobuhiro R. Hayashi*, and Igarashi, Y. (2001) CbbR, a LysR-type transcriptional regulator from Hydrogenophilus thermoluteolus, binds two cbb promoter regions. FEMS Microbiol, Lett., 198: 151-157. 
* Corresponding author

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Nobuhiro R. Hayashi, Terazono, K., Kodama, T., and Igarashi, Y. (2000). Structure of ribulose 1,5-bisphosphate carboxylase/oxygenase gene cluster from a thermophilic hydrogen-oxidizing bacterium, Hydrogenophilus thermoluteolus, and phylogeny of the fructose 1.6-bisphosphate aldolase encoded by cbbA in the cluster. Biosci. Biotech. Biochem., 64: 61-71.

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Nobuhiro R. Hayashi, Arai, H., Kodama, T., and Igarashi, Y. (1999). The cbbQ genes, located downstream of the form I and form II RubisCO genes, affect the activity of both RubisCOs. Biochem. Biophys. Res. Commun.,  265: 177-183.

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Pedro, M. S., Nobuhiro R. Hayashi, Mukai, T., Ishii, M., Yokota, A., and Igarashi, Y. (1999). Physiological and chemotaxonomical studies on microflora within a composter operated at high temperature. J. Biosci. Bioeng., 88: 92-97.

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Nobuhiro R. Hayashi, Ishida, T., Yokota, A., Kodama, T., and Igarashi, Y. (1999). Hydrogenophilus thermoluteolus gen. nov., sp. nov., a thermophilic facultatively chemolithoautotrophic hydrogen-oxidizing bacterium. Int. J. System. Bacteriol., 49: 783-786.

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Nobuhiro R. Hayashi, Arai, H., Kodama, T., and Igarashi, Y. (1998). The nirQ gene, which is required for denitrification of Pseudomonas aeruginosa, can activate the RubisCO from Pseudomonas hydrogenothermophila. Biochim. Biophys. Acta, 1381: 347-350. 

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Nobuhiro R. Hayashi, Oguni, A., Yaguchi, T., Chung, S.-Y., Nishihara, H., Kodama, T., and Igarashi, Y. (1998). Different properties of gene products of three sets ribulose 1,5-bisphosphate carboxylase/oxygenase from a marine obligately autotrophic hydrogen-oxidizing bacterium, Hydrogenovibrio marinus strain MH-110. J. Ferment. Bioeng., 85: 150-155.

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Pedro, M. S., Nobuhiro R. Hayashi, Ishii, M., Yokota, A., and Igarashi, Y. (1998). Physiological and chemotaxonomical studies on microflora within a composters. Ann. Rep. ICBiotech., 21: 249-273.

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Nobuhiro R. Hayashi, Arai, H., Kodama, T., and Igarashi, Y. (1997). The novel genes, cbbQ and cbbO, located downstream from the RubisCO genes of Pseudomonas hydrogenothermophila, affect the conformational states and activity of RubisCO. Biochem. Biophys. Res. Commun., 241: 565-569.

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Nobuhiro R. Hayashi, Terazono, K., Hasegawa, N., Kodama, T., and Igarashi, Y. (1997). Identification and characterization of phycobiliprotein from a thermophilic cyanobacterium, Chroococcidiopsis sp. strain TS-821. J. Ferment. Bioeng., 84, 475-477.

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Ishida, T., Hasegawa, N., Nobuhiro R. Hayashi, Peerapornpisal, Y., Ishii, M., Igarashi, Y., and Kodama, T. (1997). Growth characteristics and dense culture of a thermophilic cyanobacterium, Chroococcidiopsis sp. strain TS-821. J. Ferment. Bioeng., 83: 571-576.

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Igarashi, Y., Nobuhiro R. Hayashi, Terazono, K., Hasegawa, N., and Peerapornpisal, Y. (1997). Studies on diversity of CO2 fixing microorganisms and their application for reorganization of carbon dioxide (Identification and characterization of phycobiliprotein from a thermophilic cyanobacterium, Chroococcdiopsis sp.Strain TS-821). Annu. Rep. ICBiotech., 20: 449-452.

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Yuliar, Ishii, M., Hashimoto, A., Nobuhiro R. Hayashi, Kodama, T., and Igarashi, Y. (1996). Autotrophic CO2 fixation in Pseudomonas sp. strain HD-1. Annu. Rep. ICBiotech., 19: 102-110. 

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Ishida, T., Hasegawa, N., Nobuhiro R. Hayashi, Peerapornpisal, Y., Ishii, M., Igarashi, Y., and Kodama, T. (1996). Cultivation of a thermophilic cyanobacterium, Chroococcidiopsis sp. strain TS-821. Annu. Rep. ICBiotech., 19: 431-436. 

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Nobuhiro R. Hayashi, Ishida, T., Peerapornpisal, Y., Igarashi, Y., and Kodama, T. (1995). Effect of carbon dioxide concentration on the growth and RubisCO activity of a thermophilic cyanobacterium, Chroococcidiopsis sp. strain TS-821. J. Ferment. Bioeng., 80: 507-509.

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Yokoyama, K., Nobuhiro R. Hayashi, Arai, H., Chung, S.-Y., Igarashi, Y., and Kodama, T. (1995). Genes encoding RubisCO in Pseudomonas hydrogenothermophila are followed by a novel cbbQ gene similar to nirQ of the denitrification gene cluster from Pseudomonas species. Gene, 153: 75-79.

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Nobuhiro R. Hayashi, Peerapornpisal, Y., Nishihara, H., Ishii, M., Igarashi, Y., and Kodama, T. (1994). Isolation and cultivation of thermophilic cyanobacteria from hot springs of northern Thailand. J. Ferment. Bioeng., 78: 179-181.

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Zhao, X., Nobuhiro R. Hayashi, Igarashi, Y., and Kodama, T. (1994). Studies on carbon assimilation of an alkalophilic C-1 compound utilizing bacterium, Moraxella sp. M-Z.
Annu. Rep. ICBiotech., 17: 183-192. 

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Igarashi, Y., Nobuhiro Hayashi, Peerapornpisal, Y., and Kodama, T.  (1993). Isolation and characterization of thermophilic cyanobacteria from hot springs of northern Thailand. Annu. Rep. ICBiotech., 16: 347-348. 

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Igarashi, Y., Nobuhiro Hayashi, Peerapornpisal, Y., and Kodama, T. (1992). Isolation and cultivation of thermophilic cyanobacteria from Thai and Japanese hot springs. Annu. Rep. ICBiotech., 15: 354-355. 

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Igarashi, Y., Nobuhiro Hayashi, Peerapornpisal, Y., and Kodama, T. (1991). Isolation of thermophilic microalgae from hotsprings of northern Thailand. Annu. Rep. ICBiotech., 14: 352-354. 

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IInternational Meetings

Crosstalk between cAMP-PKA and Cdc2/Cyclin B signaling pathways.
Gordon Research Conference: Macromolecular Organization and Cell Function. 
August 15-20, 2004 in Oxford, UK. Poster presentation.

CbbQ which can activate the RubisCO from Pseudomonas hydrogenothermophila.
Gordon Research Conference: Molecular Basis of One-Carbon Metabolism
June 28-July 3, 1998, Henniker, NH, USA.  Poster presentation.

"The novel gene, cbbQ and cbbO, located downstream from the RubisCO gene of Pseudomonas hydrogenothermophila, affect the conformational states and activity of RubisCO."
Pseudomonas '97 VI international congresson Pseudomonas. Molecular biology and biotechnology.
September 4-8, 1997 Madrid, Spain.  Poster presentation.

"Post-translational activation of RubisCO by the genes located downstream from the RubisCO genes from Pseudomonas hydrogenothermophila."
8th international symposium on microbial growth on C1 compounds.
August 27-September 1, 1995, San Diego, CA, USA. Poster presentation.