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the University of Tokyo | 論文
- Selective Cytotoxic Activity of Valinomycin against HT-29 Human Colon Carcinoma Cells via Down-Regulation of GRP78(Pharmacology)
- Structure of Thioviridamide, a Novel Apoptosis Inducer from Streptomyces olivoviridis
- Thioviridamide, a Novel Apoptosis Inducer in Transformed Cells from Streptomyces olivoviridis
- Studies on Terpenoids Produced by Actinomycetes : Isolation and Structural Elucidation of Antioxidative Agents, Naphterpins B and C
- Deoxyverrucosidin, a Novel GRP78/BiP Down-regulator, Produced by Penicillium sp
- Prunustatin A, a Novel GRP78 Molecular Chaperone Down-regulator Isolated from Streptomyces violaceoniger
- Structure of Tyroscherin, an Antitumor Antibiotic against IGF-1-dependent Cells from Pseudallescheria sp
- Byssochlamysol, a New Antitumor Steroid against IGF-1-dependent Cells from Byssochlamys nivea II. Physico-chemical Properties and Structure Elucidation
- Byssochlamysol, a New Antitumor Steroid against IGF-1-dependent Cells from Byssochlamys nivea I, taxonomy, Fermentation, Isolation and Biological Activity
- Structure of Aspochalasin H, a New Member of the Aspochalasin Family
- A Novel Neuronal Cell Protecting Substance, Halxazone, Produced by Streptomyces halstedii
- Neuroprotectins A and B, Bicyclohexapeptides Protecting Chick Telencephalic Neuronal Cells from Excitotoxicity : I. Fermentation, Isolation, Physico-chemical Properties and Biological Activity
- Ammocidin, a New Apoptosis Inducer in Ras-dependent Cells from Saccharothrix sp. : II. Physico-chemical Properties and Structure Elucidation
- Ammocidin, a New Apoptosis Inducer in Ras-dependent Cells from Saccharothrix sp. : I. Production, Isolation and Biological Activity
- Selective Cytotoxicity and Stereochemistry of Aspochalasin D
- Phoenistatin, A New Gene Expression-Enhancing Substance Produced by Acremonium fusigerum
- The Break Minimization Problem
- Absolute Configuration of Migrastatin, a Novel 14-Membered Ring Macrolide
- P10-6 イネの根における鉄欠乏初期の遺伝子発現解析(ポスター紹介,10.植物の微量栄養素,2009年度京都大会)
- 10-9 OsIRO2とムギネ酸類による鉄吸収に関わる遺伝子は同調的に発現し、効率的な鉄の吸収・移行を制御する(10.植物の微量栄養素,2009年度京都大会)
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