Search Count: 498
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Organism: Sars-cov-2 pseudovirus
Method: X-RAY DIFFRACTION Release Date: 2025-09-17 Classification: VIRAL PROTEIN Ligands: ZN, SAH, A1JLH, CL, IMD |
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Organism: Severe acute respiratory syndrome coronavirus
Method: X-RAY DIFFRACTION Release Date: 2025-08-27 Classification: VIRAL PROTEIN Ligands: ZN, SAH, A1JDF, CL, EDO, IMD, IPA, SO4 |
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Organism: Homo sapiens, Synthetic construct
Method: X-RAY DIFFRACTION Release Date: 2025-07-16 Classification: APOPTOSIS |
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Crystal Structure Of The Espe7 Thioesterase Mutant R35A From The Esperamicin Biosynthetic Pathway At 1.6 A
Organism: Actinomadura verrucosospora
Method: X-RAY DIFFRACTION Release Date: 2025-06-25 Classification: HYDROLASE Ligands: K, DCC |
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Organism: Listeria phage lp-125
Method: X-RAY DIFFRACTION Release Date: 2025-06-25 Classification: HYDROLASE Ligands: ZN, SO4 |
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Serial Femtosecond X-Ray Structure Of A Fluorescence Optimized Bathy Phytochrome Pairfp2 Derived From Wild-Type Agp2 In Its Pfr State (I0A).
Organism: Agrobacterium fabrum str. c58
Method: X-RAY DIFFRACTION Release Date: 2025-05-14 Classification: SIGNALING PROTEIN Ligands: EL5, SO4, CL, EDO |
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Serial Femtosecond X-Ray Structure Of A Fluorescence Optimized Bathy Phytochrome Pairfp2 Derived From Wild-Type Agp2 In Its Pfr State (I0B).
Organism: Agrobacterium fabrum str. c58
Method: X-RAY DIFFRACTION Release Date: 2025-05-14 Classification: SIGNALING PROTEIN Ligands: EL5, SO4 |
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Serial Femtosecond X-Ray Structure Of A Fluorescence Optimized Bathy Phytochrome Pairfp2 Derived From Wild-Type Agp2 In I1 Intermediate State.
Organism: Agrobacterium fabrum str. c58
Method: X-RAY DIFFRACTION Release Date: 2025-05-14 Classification: SIGNALING PROTEIN Ligands: EL5, SO4 |
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Serial Femtosecond X-Ray Structure Of A Fluorescence Optimized Bathy Phytochrome Pairfp2 Derived From Wild-Type Agp2 In I2 Intermediate State.
Organism: Agrobacterium fabrum str. c58
Method: X-RAY DIFFRACTION Release Date: 2025-05-14 Classification: SIGNALING PROTEIN Ligands: EL5, SO4, PGE, PEG, CL |
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Serial Femtosecond X-Ray Structure Of A Fluorescence Optimized Bathy Phytochrome Pairfp2 Derived From Wild-Type Agp2 In I3 Intermediate State.
Organism: Agrobacterium fabrum str. c58
Method: X-RAY DIFFRACTION Release Date: 2025-05-14 Classification: SIGNALING PROTEIN Ligands: EL5, SO4, GOL, PEG |
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Serial Femtosecond X-Ray Structure Of A Fluorescence Optimized Bathy Phytochrome Pairfp2 Derived From Wild-Type Agp2 In I4 Intermediate State.
Organism: Agrobacterium fabrum str. c58
Method: X-RAY DIFFRACTION Release Date: 2025-05-14 Classification: SIGNALING PROTEIN Ligands: EL5, SO4, CL, PEG |
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Serial Femtosecond X-Ray Structure Of A Fluorescence Optimized Bathy Phytochrome Pairfp2 Derived From Wild-Type Agp2 In I5 Intermediate State.
Organism: Agrobacterium fabrum str. c58
Method: X-RAY DIFFRACTION Release Date: 2025-05-14 Classification: SIGNALING PROTEIN Ligands: EL5, SO4, CL |
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Serial Femtosecond X-Ray Structure Of A Fluorescence Optimized Bathy Phytochrome Pairfp2 Derived From Wild-Type Agp2 In I6 Intermediate State.
Organism: Agrobacterium fabrum str. c58
Method: X-RAY DIFFRACTION Release Date: 2025-05-14 Classification: SIGNALING PROTEIN Ligands: EL5, SO4, CL |
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Serial Femtosecond X-Ray Structure Of A Fluorescence Optimized Bathy Phytochrome Pairfp2 Derived From Wild-Type Agp2 In I7 Intermediate State.
Organism: Agrobacterium fabrum str. c58
Method: X-RAY DIFFRACTION Release Date: 2025-05-14 Classification: SIGNALING PROTEIN Ligands: EL5, SO4, PEG |
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Structure Of E. Coli Dihydrofolate Reductase (Dhfr) In An Occluded Conformation And In Complex With A Cycloguanil Derivative
Organism: Escherichia coli
Method: X-RAY DIFFRACTION Resolution:2.35 Å Release Date: 2025-02-26 Classification: OXIDOREDUCTASE Ligands: A1A3E |
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Structure Of E. Coli Dihydrofolate Reductase (Dhfr) In An Occluded Conformation And In Complex With Cycloguanil
Organism: Escherichia coli
Method: X-RAY DIFFRACTION Resolution:2.17 Å Release Date: 2025-02-26 Classification: OXIDOREDUCTASE Ligands: 1CY, FLC |
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Design And Application Of Synthetic 17B-Hsd13 Substrates To Drug Discovery, And To Reveal Preserved Catalytic Activity Of Protective Human Variants
Organism: Homo sapiens
Method: X-RAY DIFFRACTION Resolution:2.09 Å Release Date: 2024-11-27 Classification: HYDROLASE Ligands: NAD, A1AG4 |
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Design And Application Of Synthetic 17B-Hsd13 Substrates To Drug Discovery, And To Reveal Preserved Catalytic Activity Of Protective Human Variants
Organism: Homo sapiens
Method: X-RAY DIFFRACTION Resolution:2.36 Å Release Date: 2024-11-27 Classification: HYDROLASE Ligands: NAD, A1AG5 |
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Design And Application Of Synthetic 17B-Hsd13 Substrates To Drug Discovery, And To Reveal Preserved Catalytic Activity Of Protective Human Variants
Organism: Homo sapiens
Method: X-RAY DIFFRACTION Resolution:2.59 Å Release Date: 2024-11-27 Classification: HYDROLASE Ligands: NAD, A1AG6 |
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Organism: Odocoileus virginianus
Method: ELECTRON MICROSCOPY Release Date: 2024-11-06 Classification: PROTEIN FIBRIL |




















