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9R9A image
Cryoem Structure Of A Membrane Protein Associated With A Contractile Injection In Salmonella Enterica Subspecies Salamae
Organism: Salmonella enterica subsp. salamae
Method: ELECTRON MICROSCOPY
Release Date: 2026-04-22
Classification: MEMBRANE PROTEIN

9R9H image
Cryo-Em Structure Of An Extracellular Contractile Injection System In Salmonella Enterica Subspecies Salamae, The Sheath And Inner Tube Module In Extended State.

9R9I image
Cryo-Em Structure Of An Extracellular Contractile Injection System In Salmonella Enterica Subspecies Salamae, The Sheath In Contracted State.

9R9N image
Cryo-Em Structure Of A Contractile Injection System In Salmonella Enterica Subspecies Salamae, The Cap Portion In Extended State.

9RCE image
Cryo-Em Structure Of A Contractile Injection System In Salmonella Enterica Subspecies Salamae, The Baseplate Portion In Extended State.

9YOP image
Cryo-Em Structure Of Human Beta-Cardiac Myosin In The Interacting-Heads Motif And S2-Fh Docked State

9YP4 image
Cryo-Em Structure Of Human Beta-Cardiac Myosin Bound To Omecamtiv Mecarbil In The Interacting-Heads Motif And S2-Fh Docked State
Organism: Homo sapiens, Saccharomyces cerevisiae, Aequorea victoria, Mus musculus
Method: ELECTRON MICROSCOPY
Resolution:4.50 Å Release Date: 2026-04-08
Classification: CONTRACTILE PROTEIN
Ligands: 2OW, ADP, PO4

9YP9 image
Cryo-Em Structure Of Human Beta-Cardiac Myosin Bound To Mavacamten In The Interacting-Heads Motif And S2-Fh Docked State

9YR7 image
Cryo-Em Structure Of Human Beta-Cardiac Myosin Bound To Mavacamten In The Interacting-Heads Motif And S2-Fh Undocked State

9YRG image
Cryo-Em Structure Of Human Beta-Cardiac Myosin In The Interacting-Heads Motif And S2-Fh Undocked State
Organism: Homo sapiens, Saccharomyces cerevisiae, Aequorea victoria, Mus musculus
Method: ELECTRON MICROSCOPY
Resolution:3.20 Å Release Date: 2026-04-08
Classification: CONTRACTILE PROTEIN
Ligands: ADP, PO4

9YRH image
Cryo-Em Structure Of Human Beta-Cardiac Myosin Bound To Omecamtiv Mecarbil In The Interacting-Heads Motif And S2-Fh Undocked State
Organism: Homo sapiens, Saccharomyces cerevisiae, Aequorea victoria, Mus musculus
Method: ELECTRON MICROSCOPY
Resolution:3.80 Å Release Date: 2026-04-08
Classification: CONTRACTILE PROTEIN
Ligands: 2OW, ADP, PO4

9MOG image
Structure Of The Distal Part Of The Bacteriophage T4 Tail
Organism: Escherichia phage t4
Method: ELECTRON MICROSCOPY
Release Date: 2026-01-28
Classification: VIRAL PROTEIN
Ligands: ZN

9MOH image
Structure Of The Middle Part Of The Bacteriophage T4 Tail
Organism: Escherichia phage t4
Method: ELECTRON MICROSCOPY
Release Date: 2026-01-28
Classification: VIRAL PROTEIN

9MKB image
Structure Of The Bacteriophage T4 Portal-Neck-Tail Complex
Organism: Escherichia phage t4
Method: ELECTRON MICROSCOPY
Release Date: 2025-12-24
Classification: VIRAL PROTEIN
Ligands: ZN

9YF5 image
N4 Empty Particle C6 Tail
Organism: Escherichia phage n4
Method: ELECTRON MICROSCOPY
Release Date: 2025-12-24
Classification: VIRAL PROTEIN

9QGL image
Cryo-Em Structure Of The Plpvc1 Baseplate, 6-Fold Symmetrized (C6), In Extended State
Organism: Photorhabdus luminescens
Method: ELECTRON MICROSCOPY
Release Date: 2025-10-29
Classification: VIRUS LIKE PARTICLE

9QGM image
Cryo-Em Structure Of The Plpvc1 Central Spike, 3-Fold Symmetrized (C3), In Extended State
Organism: Photorhabdus luminescens
Method: ELECTRON MICROSCOPY
Release Date: 2025-10-29
Classification: VIRUS LIKE PARTICLE

9QGN image
Cryo-Em Structure Of The Plpvc1 Cap, 6-Fold Symmetrized (C6), In Extended State
Organism: Photorhabdus luminescens
Method: ELECTRON MICROSCOPY
Release Date: 2025-10-29
Classification: VIRUS LIKE PARTICLE

9QGO image
Interaction Between Plpvc1 Baseplate And Fiber In Extended State
Organism: Photorhabdus luminescens
Method: ELECTRON MICROSCOPY
Release Date: 2025-10-29
Classification: VIRUS LIKE PARTICLE

9QGP image
Cryo-Em Structure Of The Plpvc1 Sheath, 6-Fold Symmetrized (C6), In Contracted State
Organism: Photorhabdus luminescens
Method: ELECTRON MICROSCOPY
Release Date: 2025-10-29
Classification: VIRUS LIKE PARTICLE
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