Search Count: 6
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Efficient And Scalable Protein Design Using A Relaxed Sequence Space
Organism: Synthetic construct
Method: X-RAY DIFFRACTION Resolution:2.10 Å Release Date: 2024-10-16 Classification: DE NOVO PROTEIN Ligands: SO4 |
Organism: Synthetic construct
Method: X-RAY DIFFRACTION
Release Date: 2024-10-16
Ligands: SO4
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Crystal Structure Of The De Novo Designed Protein 200 Aa In The Crystal Form 1
Organism: Escherichia coli
Method: X-RAY DIFFRACTION Resolution:2.88 Å Release Date: 2024-10-16 Classification: DE NOVO PROTEIN Ligands: GOL |
Organism: Escherichia coli
Method: X-RAY DIFFRACTION
Release Date: 2024-10-16
Ligands: GOL
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Crystal Structure Of The De Novo Designed Protein 200 Aa In The Crystal Form 2
Organism: Escherichia coli
Method: X-RAY DIFFRACTION Resolution:2.21 Å Release Date: 2024-10-16 Classification: DE NOVO PROTEIN Ligands: SO4 |
Organism: Escherichia coli
Method: X-RAY DIFFRACTION
Release Date: 2024-10-16
Ligands: SO4
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Scalable Protein Design Using Hallucination In A Relaxed Sequence Space
Organism: Synthetic construct
Method: ELECTRON MICROSCOPY Release Date: 2024-10-16 Classification: DE NOVO PROTEIN |
Organism: Synthetic construct
Method: ELECTRON MICROSCOPY
Release Date: 2024-10-16
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Efficient And Scalable Protein Design Using A Relaxed Sequence Space
Organism: Synthetic construct
Method: X-RAY DIFFRACTION Resolution:2.80 Å Release Date: 2024-10-16 Classification: DE NOVO PROTEIN |
Organism: Synthetic construct
Method: X-RAY DIFFRACTION
Release Date: 2024-10-16
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Scalable Protein Design Using Hallucination In A Relaxed Sequence Space
Organism: Synthetic construct
Method: ELECTRON MICROSCOPY Release Date: 2024-10-16 Classification: DE NOVO PROTEIN |
Organism: Synthetic construct
Method: ELECTRON MICROSCOPY
Release Date: 2024-10-16
