Search Count: 13
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Nmr Structural Characterisation Of Pharmaceutically Relevant Proteins Obtained Through A Novel Recombinant Production: The Case Of The Pulmonary Surfactant Polypeptide C Analogue Rsp-C33Leu.
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Organism: Sus scrofa
Method: SOLUTION NMR
Release Date: 2017-06-07
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Nmr Structure Of N-Terminal Domain From A. Ventricosus Minor Ampullate Spidroin (Misp) At Ph 7.2
Organism: Araneus ventricosus
Method: SOLUTION NMR Release Date: 2015-08-19 Classification: STRUCTURAL PROTEIN |
Organism: Araneus ventricosus
Method: SOLUTION NMR
Release Date: 2015-08-19
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Nmr Structure Of N-Terminal Domain From A. Ventricosus Minor Ampullate Spidroin (Misp) At Ph 5.5
Organism: Araneus ventricosus
Method: SOLUTION NMR Release Date: 2015-08-19 Classification: STRUCTURAL PROTEIN |
Organism: Araneus ventricosus
Method: SOLUTION NMR
Release Date: 2015-08-19
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Nmr Structure Of C-Terminal Domain From A. Ventricosus Minor Ampullate Spidroin (Misp)
Organism: Araneus ventricosus
Method: SOLUTION NMR Release Date: 2014-08-20 Classification: STRUCTURAL PROTEIN |
Organism: Araneus ventricosus
Method: SOLUTION NMR
Release Date: 2014-08-20
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Nmr Structure Of Major Ampullate Spidroin 1 N-Terminal Domain At Ph 5.5
Organism: Euprosthenops australis
Method: SOLUTION NMR Release Date: 2013-11-27 Classification: STRUCTURAL PROTEIN |
Organism: Euprosthenops australis
Method: SOLUTION NMR
Release Date: 2013-11-27
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Structure Of Monomeric Nt From Euprosthenops Australis Major Ampullate Spidroin 1 (Masp1)
Organism: Euprosthenops australis
Method: X-RAY DIFFRACTION Resolution:1.70 Å Release Date: 2012-08-01 Classification: STRUCTURAL PROTEIN Ligands: BR |
Organism: Euprosthenops australis
Method: X-RAY DIFFRACTION
Release Date: 2012-08-01
Ligands: BR
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Nmr Structure Of A Monomeric Mutant (A72R) Of Major Ampullate Spidroin 1 N-Terminal Domain
Organism: Euprosthenops australis
Method: SOLUTION NMR Release Date: 2012-06-27 Classification: STRUCTURAL PROTEIN |
Organism: Euprosthenops australis
Method: SOLUTION NMR
Release Date: 2012-06-27
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Nmr Structure Of Major Ampullate Spidroin 1 N-Terminal Domain At Ph 7.2
Organism: Euprosthenops australis
Method: SOLUTION NMR Release Date: 2012-06-27 Classification: STRUCTURAL PROTEIN |
Organism: Euprosthenops australis
Method: SOLUTION NMR
Release Date: 2012-06-27
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Brichos Domain Of Surfactant Protein C Precursor Protein
Organism: Homo sapiens
Method: X-RAY DIFFRACTION Resolution:2.20 Å Release Date: 2012-02-15 Classification: SURFACTANT PROTEIN |
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Release Date: 2012-02-15
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Self-Assembly Of Spider Silk Proteins Is Controlled By A Ph-Sensitive Relay
Organism: Euprosthenops australis
Method: X-RAY DIFFRACTION Resolution:1.70 Å Release Date: 2010-05-12 Classification: STRUCTURAL PROTEIN Ligands: EDO, PEG |
Organism: Euprosthenops australis
Method: X-RAY DIFFRACTION
Release Date: 2010-05-12
Ligands: EDO, PEG
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Self-Assembly Of Spider Silk Proteins Is Controlled By A Ph-Sensitive Relay
Organism: Euprosthenops australis
Method: X-RAY DIFFRACTION Resolution:2.20 Å Release Date: 2010-05-12 Classification: STRUCTURAL PROTEIN Ligands: PGE |
Organism: Euprosthenops australis
Method: X-RAY DIFFRACTION
Release Date: 2010-05-12
Ligands: PGE
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Self-Assembly Of Spider Silk Proteins Is Controlled By A Ph-Sensitive Relay
Organism: Euprosthenops australis
Method: X-RAY DIFFRACTION Resolution:2.30 Å Release Date: 2010-05-12 Classification: STRUCTURAL PROTEIN Ligands: EDO, PEG, PGE |
Organism: Euprosthenops australis
Method: X-RAY DIFFRACTION
Release Date: 2010-05-12
Ligands: EDO, PEG, PGE
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Self-Assembly Of Spider Silk Proteins Is Controlled By A Ph-Sensitive Relay
Organism: Euprosthenops australis
Method: X-RAY DIFFRACTION Resolution:2.15 Å Release Date: 2010-05-12 Classification: STRUCTURAL PROTEIN Ligands: EDO, PGE |
Organism: Euprosthenops australis
Method: X-RAY DIFFRACTION
Release Date: 2010-05-12
Ligands: EDO, PGE
