Search Count: 24
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Organism: Severe acute respiratory syndrome coronavirus 2
Method: X-RAY DIFFRACTION Release Date: 2025-06-11 Classification: VIRAL PROTEIN Ligands: A1IO2 |
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Solution Nmr Structure Of 9-Residue Rosetta-Designed Cyclic Peptide D9.16 In D6-Dmso With Cis/Trans Switching
Organism: Synthetic construct
Method: SOLUTION NMR Release Date: 2022-09-14 Classification: DE NOVO PROTEIN |
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Solution Nmr Structure Of 8-Residue Rosetta-Designed Cyclic Peptide D8.31 In D6-Dmso With Cis/Trans Switching (A-Cc Conformation)
Organism: Synthetic construct
Method: SOLUTION NMR Release Date: 2022-09-14 Classification: DE NOVO PROTEIN |
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Solution Nmr Structure Of 8-Residue Rosetta-Designed Cyclic Peptide D8.21 In D6-Dmso With Cis/Trans Switching
Organism: Synthetic construct
Method: SOLUTION NMR Release Date: 2022-09-14 Classification: DE NOVO PROTEIN |
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Solution Nmr Structure Of 8-Residue Rosetta-Designed Cyclic Peptide D8.21 In 50% D6-Dmso And 50% Water With Cis/Trans Switching (Cc Conformation, 50%)
Organism: Synthetic construct
Method: SOLUTION NMR Release Date: 2022-09-14 Classification: DE NOVO PROTEIN |
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Solution Nmr Structure Of 9-Residue Rosetta-Designed Cyclic Peptide D9.16 In Cdcl3 With Cis/Trans Switching (A-Tt Conformation)
Organism: Synthetic construct
Method: SOLUTION NMR Release Date: 2022-09-14 Classification: DE NOVO PROTEIN |
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Solution Nmr Structure Of 8-Residue Rosetta-Designed Cyclic Peptide D8.31 In Cdcl3 With Cis/Trans Switching
Organism: Synthetic construct
Method: SOLUTION NMR Release Date: 2022-09-14 Classification: DE NOVO PROTEIN |
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Solution Nmr Structure Of 8-Residue Rosetta-Designed Cyclic Peptide D8.21 In Cdcl3 With Cis/Trans Switching (Tt Conformation, 47%)
Organism: Synthetic construct
Method: SOLUTION NMR Release Date: 2022-09-14 Classification: DE NOVO PROTEIN |
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Organism: Synthetic construct
Method: X-RAY DIFFRACTION Resolution:0.85 Å Release Date: 2022-09-14 Classification: DE NOVO PROTEIN Ligands: HOH |
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Solution Nmr Structure Of 9-Residue Rosetta-Designed Cyclic Peptide D9.16 In Cdcl3 With Cis/Trans Switching (B-Tc Conformation)
Organism: Synthetic construct
Method: SOLUTION NMR Release Date: 2022-09-14 Classification: DE NOVO PROTEIN |
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Solution Nmr Structure Of 8-Residue Rosetta-Designed Cyclic Peptide D8.31 In D6-Dmso With Cis/Trans Switching (B-Ct Conformation)
Organism: Synthetic construct
Method: SOLUTION NMR Release Date: 2022-09-14 Classification: DE NOVO PROTEIN |
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Solution Nmr Structure Of 8-Residue Rosetta-Designed Cyclic Peptide D8.21 In 50% D6-Dmso And 50% Water With Cis/Trans Switching (Cc Conformation, 50%)
Organism: Synthetic construct
Method: SOLUTION NMR Release Date: 2022-09-14 Classification: DE NOVO PROTEIN |
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Solution Nmr Structure Of 8-Residue Rosetta-Designed Cyclic Peptide D8.21 In Cdcl3 With Cis/Trans Switching (Tc Conformation, 53%)
Organism: Synthetic construct
Method: SOLUTION NMR Release Date: 2022-09-14 Classification: DE NOVO PROTEIN |
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Discovery And Characterisation Of An Antibody That Selectively Modulates The Inhibitory Activity Of Plasminogen Activator Inhibitor-1
Organism: Homo sapiens
Method: X-RAY DIFFRACTION Resolution:2.90 Å Release Date: 2019-02-13 Classification: BLOOD CLOTTING |
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Organism: Mus musculus
Method: X-RAY DIFFRACTION Resolution:1.64 Å Release Date: 2017-06-14 Classification: IMMUNE SYSTEM Ligands: PEG |
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Organism: Homo sapiens, Mus musculus
Method: X-RAY DIFFRACTION Resolution:2.60 Å Release Date: 2017-06-14 Classification: IMMUNE SYSTEM Ligands: GOL |
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Analysis Of The Structural And Molecular Basis Of Voltage-Sensitive Sodium Channel Inhibition By The Spider Toxin, Huwentoxin-Iv (-Trtx-Hh2A).
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Analysis Of The Structural And Molecular Basis Of Voltage-Sensitive Sodium Channel Inhibition By The Spider Toxin, Huwentoxin-Iv (-Trtx-Hh2A).
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Analysis Of The Structural And Molecular Basis Of Voltage-Sensitive Sodium Channel Inhibition By The Spider Toxin, Huwentoxin-Iv (-Trtx-Hh2A).
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Solution Structure Of The Anti-Apoptotic Protein Bcl-Xl In Complex With "Sar By Nmr" Ligands
Organism: Homo sapiens
Method: SOLUTION NMR Release Date: 2005-06-07 Classification: APOPTOSIS Ligands: 4FC, TN1 |