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Dep. Of Applied Biological Sci. Tokyo Univ. Of Sci. | 論文
- Identification of Macrolide Antibiotic-binding Human_p8 Protein
- Identification of Antibiotic Clarithromycin Binding Peptide Displayed by T7 Phage Particles
- Neoechinulin A Protects PC12 Cells against MPP^+-induced Cytotoxicity
- Structure-activity Relationships of Neoechinulin A Analogues with Cytoprotection against Peroxynitrite-induced PC12 Cell Death
- An Ergosterol Peroxide, a Natural Product That Selectively Enhances the Inhibitory Effect of Linoleic Acid on DNA Polymerase β
- Galactosyldiacylglycerol, a Mammalian DNA Polymerase α-Specific Inhibitor from a Sea Alga, Petalonia bingbamiae
- The Cyanogenic Glucoside, Prunasin (D-Mandelonitrile-β-D-Glucoside), Is a Novel Inhibitor of DNA Polymerase β
- Action of a New Mammalian DNA Polymerase Inhibitor, Sulfoquinovosyldiacylglycerol
- Phytotoxins from the Septoria spp. Plant Pathogenic Fungus on Leafy Spurge
- Sulfoquinovosyldiacylglycerol, KM043,a New Potent Inhibitor of Eukaryotic DNA Polymerases and HIV-Reverse Transcriptase Type 1 from a Marine Red Alga, Gigartina tenella
- Phytoactive Eremophilanes Produced by the Weed Pathogen Drechslera gigantea
- (Z)-3-Hexenyl and trans-Linalool 3,7-oxide β-Primeverosides Isolated as Aroma Precursors from Leaves of a Green Tea Cultivar
- Geranyl 6-O-α-L-Arabinopyranosyl-β-D-glucopyranoside Isolated as an Aroma Precursor from Leaves of a Green Tea Cultivar
- Anti-tumor Effect of Chemically Synthesized Sulfolipids Based on Sea Urchin's Natural Sulfonoquinovosylmonoacylglycerols
- Synthesis of Benzyl 6-O-β-D-apiofuranosyl-β-D-glucopyranoside, a Metabolite of Benzoic Acid in Lemna paucicostata(Organic Chemistry)
- Molecular Action Mode of Hippospongic Acid A, an Inhibitor of Gastrulation of Starfish Embryos
- Structure of Malformin B, a Phytotoxic Metabolite Produced by Aspergillus niger
- Structure of Malformin A, a Phytotoxic Metabolite Produced by Aspergillus niger
- Synthesis of Pseudodeflectusin and Ustusorane C: Structural Revision of Aspergione A and B
- Synthesis and Biological Activities of Neoechinulin A Derivatives : New Aspects of Structure-Activity Relationships for Neoechinulin A
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