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Graduate School of Pharmaceutical Sciences, Kyushu University | 論文
- Controlling 3_-Helix and α-Helix of Short Peptides in the Solid State
- Controlling Helical Secondary Structures by Cyclic α,α-Disubstituted Amino Acids Having Side-Chain Chiral Centers
- Computational Study on Helical Structures of Oligopeptides Containing Chiral Cyclic α,α-Disubstituted α-Amino Acids
- Synthesis of Optically Active Cyclic α,α-Disubstituted Amino Acids by Enzymatic Kinetic Resolution and Conformational Analysis of Their Peptides
- Computational Study on Conformation of Oligopeptides Containing Chiral Cyclic α,α-Disubstituted α-Amino Acids
- Synthesis of Various Chiral Cyclic α,α-Disubstituted Amino Acids and Conformational Analysis of Their Peptides
- Chiral Cyclic α,α-Disubstituted α-Amino Acids Bearing Two Chiral Centers and Conformation of Their Peptides
- Computational Study on Conformation of Oligopeptides Controlled by Side Chain Chiralities of α-Amino Acids
- Relationship between α-Amino Acid Chiral Center and Helical Secondary Structure of Its Oligopeptides
- Prediction of Helical Screw Sense of Oligopeptides Containing Chiral Amino Acids : Computational Study
- Controlling the Secondary Structure of Aib Peptides by N-Terminal Proline
- Synthesis of Cyclic α, α-Disubstituted Amino Acids Bearing a γ-Nitrogen Atom
- Controlling the Helical Screw Sense of Oligopeptides by Chiral Cyclic α, α-Disubstituted α-Amino Acid
- Conformation of Oligopeptides Containing Chiral α, α-Disubstituted Amino Acids : Computational Study
- Asymmetric Synthesis and Conformational Analysis of α,α-Disubstituted α-Amino Acids and Their Peptides
- Solid-State Conformation of a Hybrid Tripeptide between β-Amino Acid ; 8-Aminocyclooct-4-enecarboxylic Acid and 2-Aminoisobutyric Acid
- Molecular Mechanics Study on Conformational Analysis of Homooligopeptides Prepared from α, α-Disubstituted Amino Acids
- A New Steroidal Saponin from Dioscorea cayenensis
- A New Phenanthrene Glycoside and Other Constituents from Dioscorea opposita
- The Novel Compounds That Activate Farnesoid X Receptor : the Diversity of Their Effects on Gene Expression
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