Kashimura N | Department Of Life Science Faculty Of Bioresources Mie University
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概要
- KASHIMURA Naokiの詳細を見る
- 同名の論文著者
- Department Of Life Science Faculty Of Bioresources Mie Universityの論文著者
関連著者
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NISHIKAWA Shiro
Department of Life Science, Faculty of Bioresources, Mie University
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KASHIMURA Naoki
Department of Life Science, Faculty of Bioresources, Mie University
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Nishikawa Shiro
Department Of Life Science Faculty Of Bioresources Mie University
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Kashimura N
Department Of Life Science Faculty Of Bioresources Mie University
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Nishikawa Shiro
Laboratory of Biofunctional Chemistry, Department of Bioscience, Faculty of Bioresources, Mie Univer
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Kashimura Naoki
Laboratory of Biofunctional Chemistry, Department of Bioscience, Faculty of Bioresources, Mie Univer
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Kumazawa Zenzaburo
Department of Bioscience, Faculty of Bioresources, Mie University
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Kumazawa Z
Department Of Bioscience Faculty Of Bioresources Mie University
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INAGAKI Minoru
Department of Life Science, Faculty of Bioresources, Mie University
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Inagaki Masao
Department Of Life Science Faculty Of Bioresources Mie University
著作論文
- Contributions of Polysaccharide and Lipid Regions of Lipopolysaccharide to the Recognition by Spike G Protein of Bacteriophage φX174(Biochemistry & Molecular Biology)
- Recognition of Receptor Lipopolysaccharides by Spike G Protein of Bacteriophage φX174
- Improved Palladium-catalyzed Coupling of 6-Chloropurine with Terminal Acetylenes by Protecting the Hydrogen in the N^9-Position with an Acetyl Group
- Characterization of the Binding of Spike H Protien of Bacteriophage ΦX174 with Receptor Lipopolysaccharides
- Depolymerization of Hyaluronic Acid by Low-molecular-weight Amadori-rearrangement Products and Glycated Polylysine
- Effects of Ganglioside GD1a on the Fluidity and Phase Transition of Phosphatidylcholine Model Membrane Immobilized on Porous Cellulose Acetate Filter
- Cytokinin Activity of 4-Aminopyridopyrimidines toward the Growth of Tobacco Callus
- Depolymerization of Hyaluronic Acid by D-Fructose 6-Phosphate
- 4-Styrylpyrimidines as a New Class of Cytokinins(Pesticide Chemistry)
- A Highly Sensitive Amaranthus Betacyanin Assay for Cytokinins(Biological Chemistry)