New Redox Linker for the Preparation of Subunit c of Human F_1F_O-ATP Synthase
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概要
- 論文の詳細を見る
- 2011-03-01
著者
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HARA Toshiaki
Institute for Protein Research, Osaka University
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Aimoto Saburo
Institude For Protein Research Osaka University
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Hara Toshiaki
Institute For Protein Research Osaka University
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YAJIMA Nao
Institute for Protein Research, Osaka University
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Yajima Nao
Institute For Protein Research Osaka University
関連論文
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- Chemical Ligation Using a Photoremovable Auxiliary
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- Studies on Structure-Activity Relationship of HTLV-1 Protease Inhibitors
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- Synthesis of Olefin-Containing Cyclic Peptide Library Using the Solid-Phase Horner-Emmons Reaction
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- Synthesis of a Molt-Inhibiting Hormone of the American Crayfish, Procambarus clarkii and Determination of Its Disulfide Linkage
- Synthesis of Phosphorylated Polypeptide Using an Expressed Peptide as a Building Block
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- Synthesis of a Phosphorylated Polypeptide by a Thioester Method
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- Synthesis of Cysteine-Containing Polypeptide Using Peptide Thioester : Preparation of a Molt-Inhibiting Hormone from the American Crayfish, Procambarus clarkii
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- Sequential Peptide Ligation by the Combination of the Thioester Method and Extended Chemical Ligation
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- Peptide Ligation That Involves an Intramolecular N to S Acyl Shift Reaction
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- Preparation of Partially Protected Peptide Thioesters Containing a Cysteine Residue and Their Segment Condensation
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- Peptide Thioester Formation by an N to S Acyl Shift Reaction at the Cysteinyl Prolyl Cysteine Position
- Synthesis of Peptide Thioester by the Cysteinyl Prolyl Ester (CPE) Method
- Chemical Synthesis of the Functional Domain of Voltage-Gated Proton Channel
- Preparation of Peptide Thioester by Fmoc Solid-Phase Method
- Peptide Ligation via Thioester Formation at the Cysteine Residue
- Solid State NMR study on the Dimer Structure of the Transmembrane Region of Amyloid Precursor Protein
- Study for Serotonin Release-Modulating Action by Molluscan Neuropeptide APGWamide Using an Antagonist
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- Structural Difference between the Wild Type and the Constitutively Active Mutant Transmembrane-Juxtamembrane Regions of Receptor Tyrosine Kinase Revealed by Solid State NMR and Fluorescence Spectroscopy
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- Development of a Chemical Protein-Synthesis Method
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