Himeno M | Osaka Prefecture Univ. Osaka Jpn
スポンサーリンク
概要
関連著者
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Himeno M
Osaka Prefecture Univ. Osaka Jpn
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Himeno Michio
Department Of Agricultural Chemistry College Of Agriculture University Of Osaka Prefecture
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Wadano A
Dept.applied Biol.chem. Osaka Pref.univ.
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Himeno Michio
Department of Agricultural Chemistry, College of Agriculture, University of Osaka Prefecture
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Komano T
Kyoto Univ. Kyoto Jpn
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Komano Tohru
Laboratory Of Biochemistry Department Of Agricultural Chemistry Kyoto University
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Komano Tohru
京都大学
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SAKAI Hiroshi
Laboratory of Biochemistry, Department of Agricultural Chemistry, Kyoto University
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Sakai H
Okayama Univ. Okayama Jpn
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Sen K
Department Of Bioscience And Biotechnology Faculty Of Agriculture Shinshu University
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Sakai H
Department Of Pharmacology Nagasaki University Shool Of Dentistry
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Komano T
Laboratory Of Cellular Biochemistry Division Of Applied Life Sciences Graduate School Of Agriculture
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Satoh R
Univ. Tsukuba Ibaraki Jpn
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Sakai Hiroshi
Laboratory Of Biochemistry Department Of Agricultural Chemistry Kyoto University
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SUGIMOTO KENJI
Laboratory of Applied Molecular Biology, Division of Applied Biochemistry, Graduate School of Agricu
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Sugimoto K
Univ. Osaka Prefecture Osaka Jpn
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Himeno Michio
Dept. Applied Biol. Chem. Univ. Osaka. Pref.
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Himeno Michio
Laboratory Of Biochemistry Department Of Agricultural Chemistry Kinki University:department Of Chemi
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Himeno Michio
Laboratory Of Applied Molecular Biology Department Of Applied Biochemistry Osaka Prefecture Universi
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Wadano Akira
Department Of Agricultural Chemistry College Of Agriculture University Of Osaka Prefecture
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Wadano Akira
Dept. Appl. Biochem.
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Sugimoto Kenji
Laboratory Of Applied Molecular Biology Division Of Applied Biochemistry Graduate School Of Agricult
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SATOH Ryouhei
Dept.Applied Biol.Chem., Osaka Pref.Univ.
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Sugimoto Kenji
Laboratory Of Applied Molecular Biology Department Of Applied Biochemistry Osaka Prefecture Universi
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HIMENO Michio
Dept. Applied Biol. Chem. , Univ. Osaka. Pref.
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Yoshida Ken-ichi
Department of Agrobioscience, Graduate School of Agricultural Science, Kobe University
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Ihara H
Osaka Prefecture Univ. Osaka Jpn
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FUJITA Yasutaro
Department of Biotechnology, Fukuyama University
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Nishida Masato
Laboratory Of Biochemistry Department Of Agricultural Chemistry Kyoto University
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Ihara Hideshi
Department Of Agricultural Chemistry College Of Agriculture University Of Osaka Prefecture
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Mukai Eli
Department of Agricultural Chemistry, College of Agriculture, University of Osaka Prefecture
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Sen Kikuo
Department of Bioscience and Biotechnology, Faculty of Agriculture, Shinshu University
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SEN Kikuo
Laboratory of Biochemistry, Department of Agricultural Chemistry, Kyoto University
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NEKI Akio
Laboratory of Biochemistry, Department of Agricultural Chemistry, Kyoto University
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HONDA Gouichi
Laboratory of Biochemistry, Department of Agricultural Chemistry, Kyoto University
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Mukai Eli
Department Of Agricultural Chemistry College Of Agriculture University Of Osaka Prefecture
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Fukuda Rika
Laboratory Of Applied Molecular Biology Division Of Applied Biochemistry Graduate School Of Agricult
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Fujita Yasutaro
Department Of Biotechnology Faculty Of Engineering Fukuyama University
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Yamada Taku
Laboratory Of Applied Molecular Biology Department Of Applied Biochemistry Osaka Prefecture Universi
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Yoshida K
Tohoku Univ. Sendai‐shi Jpn
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Sakai H
Department Of Bioscience And Biotechnology Okayama University
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Neki A
Nippon Kayaku Co. Ltd. Tokyo Jpn
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Sen Kikuo
Department Of Bioscience And Biotechnology Shinshu University
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Yoshida Ken-ichi
Department Of Biotechnology Faculty Of Engineering Fukuyama University
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Honda Gouichi
Laboratory Of Biochemistry Department Of Agricultural Chemistry Kyoto University
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Yoshida Ken-ichi
Department Of Agrobioscience Graduate School Of Agricultural Science Kobe University
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NISHINO Touru
Dept.Applied Biol.Chem., Osaka Pref.Univ.
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Nishino Touru
Dept.applied Biol.chem. Osaka Pref.univ.
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Sen Kikuo
Department of Bioscience and Biotechnology Faculty of Agriculture, Shinshu University
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FUJITA Yasutaro
Department of Biochemistry, Hamamatsu University School of Medicine
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IHARA Hideshi
Department of Biological Science, Graduate School of Science, Osaka Prefecture University
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OGURA Yoshiko
Laboratory of Biochemistry, Department of Agricultural Chemistry, Kyoto University
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KOYAMA Naoto
Laboratory of Biochemistry, Department of Agricultural Chemistry, Kyoto University
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Muro Yoshinao
Department Of Dermatology Nagoya University Graduate School Of Medicine
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Ikeda Tokuji
Dept.agric.chem.kyoto Univ.
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Kuroda Emi
Department Of Agricultural Chemistry College Of Agriculture University Of Osaka Prefecture
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Koyama Naoto
Research Institute For Health Fundamentals Ajinomoto Co. Inc.
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Koyama Naoto
Laboratory Of Biochemistry Department Of Agricultural Chemistry Kyoto University
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小山 直人
味の素(株)アミノサイエンス研究所
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Ogura Yoshiko
Laboratory Of Biochemistry Department Of Agricultural Chemistry Kyoto University
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WADANO Akira
Department of Agricultural Chemistry, University of Osaka Prefectrue
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Muro Y
Nagoya Univ. School Of Medicine Nagoya Jpn
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小山 直人
Research Institute For Health Fundamentals Ajinomoto Co. Inc.
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Satoh Ryouhei
Department Of Applied Biological Chemistry Osaka Prefecture University
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NISHINO Touru
Dept Applied Bid. Chem. , Osaka Pref Univ.
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HIMENO Michio
Dept Applied Bid. Chem. , Osaka Pref Univ.
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WADANO Akira
Dept Applied Bid. Chem. , Osaka Pref Univ.
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UEMURA Taro
Department of Agricultural Chemistry, College of Agriculture, University of Osaka Prefecture
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Uemura Taro
Department Of Agricultural Chemistry College Of Agriculture University Of Osaka Prefecture
著作論文
- Binding of an Engineered 130-kDa Insecticidal Protein of Bacillus thuringiensis var.israelensis to Insect Cell Lines
- Importance of the Central Region of 130-kDa Insecticidal Proteins of Bacillus thuringiensis var. israelensis for Their Activity in Vivo and in Vitro
- Insecticidal Activity of the Products of Two 130-kDa Protein Genes(Biological Chemistry)
- Cloning and Nucleotide Sequences of the Two 130 kDa Insecticidal Protein Genes of Bacillus thuringiensis var. israelensis(Biological Chemistry)
- Centromere/Kinetochore Localization of Human Centromere Protein A (CENP-A) Exogenously Expressed as a Fusion to Green Fluorescent Protein
- Functional Domain Structure of Human Heterochromatin Protein HP1^ : Involvement of Internal DNA-Binding and C-Terminal Self-Association Domains in the Formation of Discrete Dots in Interphase Nuclei
- Human Homolog of Drosophila Heterochromatin-Associated Protein 1 (HP1) Is a DNA-Binding Protein Which Possesses a DNA-Binding Motif with Weak Similarity to That of Human Centromere Protein C(CENP-C)
- Specific Toxicity of δ-Endotoxins from Bacillus thuringiensis to Bombyx mori
- Carboxysomal Diffusion Resistance to Ribulose 1,5-Bisphosphate and 3-Phosphoglycerate in the Cyanobacterium Synechococcus PCC7942
- THE DETECTION OF THE REDUCING EQUIVALENT OUTSIDE OF THE CYANOBACTERIUM SYNECHOCOCCUS PCC7942' CELL UNDER LIGHT CONDITION
- The transformant of the cyanobacterium Synechococcus PCC7942 that is deficient to induce the CO_2 concentrating mechanism
- THE ROLE OF CARBOXYSOME IN CO_2 CONCENTRATING MECHANISM OF CYANOBACTERIA
- REGULATION OF RIBULOSE 1,5- BISPHOSPHATECARBOXYLASE/OXYGENASE BY CARBOXYSOMES AND THE PHYSIOLOGICALASPECTS
- Fluorometric Assay of Potential Change of Bombyx mori Midgut Brush Border Membrane Induced by δ-Endotoxin from Bacillus thuringiensis