Search Count: 56
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Organism: Pseudomonas pavonaceae, Homo sapiens
Method: ELECTRON MICROSCOPY Release Date: 2025-09-17 Classification: LIGASE Ligands: G2P, MG, TA1 |
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Re-Refined Of Crystal Structure Of Dopa Decarboxylase In Complex With The Inhibitor Carbidopa (1Js3) With Ketoenamine Form Of Carbidopa
Organism: Sus scrofa
Method: X-RAY DIFFRACTION Release Date: 2025-09-10 Classification: LYASE Ligands: A1BCS, SO4 |
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Cryoem Structure Of Inducible Lysine Decarboxylase From Hafnia Alvei D-Hydrazino-Lysine Analog At 2.3 Angstrom Resolution
Organism: Hafnia alvei atcc 51873
Method: ELECTRON MICROSCOPY Release Date: 2025-07-30 Classification: LYASE Ligands: A1BD0 |
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Cryoem Structure Of Holoenzyme Of Inducible Lysine Decarboxylase From Hafnia Alvei Holoenzyme At 2.19 Angstrom Resolution
Organism: Hafnia alvei atcc 51873
Method: ELECTRON MICROSCOPY Release Date: 2025-06-04 Classification: LYASE |
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Cryoem Structure Of Inducible Lysine Decarboxylase From Hafnia Alvei L-Hydrazino-Lysine Analog At 2.04 Angstrom Resolution
Organism: Hafnia alvei atcc 51873
Method: ELECTRON MICROSCOPY Release Date: 2025-06-04 Classification: LYASE Ligands: A1BD1 |
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X-Ray Structure Of Human Holo Aromatic L-Amino Acid Decarboxylase (Aadc) Complex With Carbidopa At Physiological Ph
Organism: Homo sapiens
Method: X-RAY DIFFRACTION Release Date: 2025-05-14 Classification: BIOSYNTHETIC PROTEIN Ligands: PLP, 142, PG4 |
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Organism: Saccharomyces cerevisiae
Method: ELECTRON MICROSCOPY Release Date: 2025-01-22 Classification: TRANSPORT PROTEIN Ligands: MG, GSP |
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Organism: Saccharomyces cerevisiae
Method: ELECTRON MICROSCOPY Release Date: 2025-01-22 Classification: TRANSPORT PROTEIN Ligands: MG, GSP |
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Organism: Saccharomyces cerevisiae
Method: ELECTRON MICROSCOPY Release Date: 2025-01-22 Classification: TRANSPORT PROTEIN Ligands: MG, GSP |
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Organism: Chikungunya virus strain s27-african prototype
Method: ELECTRON MICROSCOPY Release Date: 2024-08-14 Classification: VIRAL PROTEIN Ligands: ZN |
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Organism: Chikungunya virus strain s27-african prototype
Method: ELECTRON MICROSCOPY Release Date: 2024-08-14 Classification: VIRAL PROTEIN Ligands: ZN |
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Organism: Saccharomyces cerevisiae
Method: ELECTRON MICROSCOPY Release Date: 2024-07-24 Classification: LIPID BINDING PROTEIN |
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Organism: Saccharomyces cerevisiae
Method: ELECTRON MICROSCOPY Release Date: 2024-07-24 Classification: LIPID BINDING PROTEIN |
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Helical Reconstruction Of Yeast Eisosome Protein Pil1 Bound To Membrane Composed Of Lipid Mixture -Pip2/+Sterol (Dopc, Dope, Dops, Cholesterol 30:20:20:30)
Organism: Saccharomyces cerevisiae
Method: ELECTRON MICROSCOPY Release Date: 2024-07-24 Classification: LIPID BINDING PROTEIN |
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Helical Reconstruction Of Yeast Eisosome Protein Pil1 Bound To Membrane Composed Of Lipid Mixture +Pip2/-Sterol (Dopc, Dope, Dops, Pi(4,5)P2 50:20:20:10)
Organism: Saccharomyces cerevisiae
Method: ELECTRON MICROSCOPY Release Date: 2024-07-24 Classification: LIPID BINDING PROTEIN Ligands: I3P |
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Helical Reconstruction Of Yeast Eisosome Protein Pil1 Bound To Membrane Composed Of Lipid Mixture +Pip2/+Sterol (Dopc, Dope, Dops, Cholesterol, Pi(4,5)P2 35:20:20:15:10)
Organism: Saccharomyces cerevisiae
Method: ELECTRON MICROSCOPY Release Date: 2024-07-24 Classification: LIPID BINDING PROTEIN Ligands: I3P, P5S |
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Compact State - Pil1 In Native Eisosome Lattice Bound To Plasma Membrane Microdomain
Organism: Saccharomyces cerevisiae
Method: ELECTRON MICROSCOPY Release Date: 2024-07-24 Classification: LIPID BINDING PROTEIN |
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Compact State - Pil1 Dimer With Lipid Headgroups Fitted In Native Eisosome Lattice Bound To Plasma Membrane Microdomain
Organism: Saccharomyces cerevisiae
Method: ELECTRON MICROSCOPY Release Date: 2024-07-24 Classification: LIPID BINDING PROTEIN Ligands: I3P, SEP |
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Stretched State - Pil1 In Native Eisosome Lattice Bound To Plasma Membrane Microdomain
Organism: Saccharomyces cerevisiae
Method: ELECTRON MICROSCOPY Release Date: 2024-07-24 Classification: LIPID BINDING PROTEIN |
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Organism: Homo sapiens
Method: ELECTRON MICROSCOPY Release Date: 2024-01-24 Classification: SIGNALING PROTEIN |




















