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Department of Biochemistry, Niigata College of Pharmacy | 論文
- Modification of the Carcinogenic Potency of Quinoline, a Hepatocarcinogen, by Fluorine Atom Substitution : Evaluation of Carcinogenicity by a Medium-Term Assay
- Effects of Ascofuranone on the Mitochondria Isolated from Hansenula anomala
- Effects of Idebenone on Cyanide-Resistant Respiration of the Mitochondria Isolated from Hansenula anomala(Biological Chemistry)
- Expression of Mitochondrial Cyanide-resistant Respiration in the Absence of Respiratory Inhibitors in Hansenula anomala(Microbiology & Fermentation Industry)
- Recombinant Single-Chain Anti-idiotypic Antibody : An Effective Fungal β-1,3-Glucan Synthase Inhibitor(Microbiology)
- Identification and Characterization of a Neutralizing Monoclonal Antibody for the Epitope on HM-1 Killer Toxin
- Inhibition of β-1,3-Glucan Synthase and Cell Growth of Cryptococcus species by Recombinant Single-chain Anti-idiotypic Antibodies
- Monoclonal Antibodies and Sandwich ELISA for Quantitation of HM-1 Killer Toxin (Analytical Biochemistry)
- Round Shape Enlargement of the Yeast Spheroplast of Saccharomyces cerevisiae by HM-1 Toxin
- The Involvement of Two Specific Arginine Residues in the Action of HM-1 Killer Toxin was Deduced from Site-Directed Mutagenesis
- Structure and Activity of HYI Killer Toxin from Hansenula saturnus
- Identification of a Key Amino Acid of the Human 5-HT_ Serotonin Receptor Important for Sarpogrelate Binding
- Selectivity of Sarpogrelate to the Recombinant Human 5-HT_ Receptors as Assessed by Molecular Pharmacology and Molecular Modeling
- Alanine-Scanning Mutagenesis of HM-1 Killer Toxin and the Essential Residues for Killing Activity
- Oral and Intraperitoneal treatment of Trypanosoma brucei brucei with a combination of ascofuranone and glycerol in mice
- 共存無機粉体の表面酸性度により影響を受けた溶融炭酸塩の偏光ラマンスペクトル
- Beta-Blockers Show Inverse Agonism to a Novel Constitutively Active Mutant of β_1-Adrenoceptor
- Pharmacological and Molecular Characterization of Novel SWR-Compounds for β-Adrenergic Receptors as assessed by Molecular Modeling, Site-Directed Mutagenesis, Binding Affinity and Functional Activity
- Identification of Amino Acid Residues Important for Sarpogrelate Binding to the Human 5-Hydroxytryptamine_ Serotonin Receptor
- Site-Directed Mutagenesis of the Serotonin 5-Hydroxytryptamine_ Receptor : Identification of Amino Acids Responsible for Sarpogrelate Binding(Pharmacology)