Functional Analysis of Human P5, a Protein Disulfide Isomerase Homologue
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概要
- 論文の詳細を見る
- Japanese Biochemical Societyの論文
- 2002-09-01
著者
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HORIBE Tomohisa
Department of Bioscience & Technology, Faculty of Science & Engineering, Ritsumeikan University
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KIKUCHI Masakazu
Department of Bioscience & Bioinformatics, College of Information Science & Engineering
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Horibe Tomohisa
Department Of Bioscience & Technology Faculty Of Science & Engineering Ritsumeikan Universit
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TSUJIMOTO Yoshiyuki
Department of Applied Biochemistry, Kyoto Prefectural University
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Tsujimoto Yoshiyuki
Department Of Bioscience & Technology Faculty Of Science & Engineering Ritsumeikan Universit
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DOI Eisuke
Department of Bioscience & Technology, Faculty of Science & Engineering, Ritsumeikan University
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TSUJIMOTO Ikuo
Department of Bioscience & Technology, Faculty of Science & Engineering, Ritsumeikan University
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Kikuchi Masakazu
Department Of Bioscience & Technology Faculty Of Science & Engineering Ritsumeikan Universit
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Tsujimoto Ikuo
Department Of Bioscience & Technology Faculty Of Science & Engineering Ritsumeikan Universit
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Doi E
Department Of Bioscience & Technology Faculty Of Science & Engineering Ritsumeikan Universit
関連論文
- Evidence for Mitochondrial Localization of P5, a Member of the Protein Disulphide Isomerase Family
- Molecular Determinants of Substrate Recognition in Thermostable α-glucosidases Belonging to Glycoside Hydrolase Family 13
- Decomposition of Extremely Hard-to-Degrade Animal Proteins by Thermophilic Bacteria
- Potencies of Phosphine Peptide Inhibitors of Mammalian Thimet Oligopeptidase and Neurolysin on Two Bacterial Pz Peptidases
- Functional Analysis of Human P5, a Protein Disulfide Isomerase Homologue
- The Chaperone Activity of Protein Disulfide Isomerase Is Affected by Cyclophilin B and Cyclosporin A In Vitro
- A Single-Chain Fv Fragment 2A3 Specific for Native Lysozyme : Isolation from a Human Synthetic Phage Display Antibody Library and Characterization
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- Potencies of Phosphine Peptide Inhibitors of Mammalian Thimet Oligopeptidase and Neurolysin on Two Bacterial Pz Peptidases
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