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Organism: Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-03-04 Classification: MEMBRANE PROTEIN Ligands: DQC |
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Organism: Mus musculus, Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-03-04 Classification: MEMBRANE PROTEIN Ligands: NAG |
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Organism: Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-03-04 Classification: MEMBRANE PROTEIN Ligands: GGL, A1EA4 |
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Organism: Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-03-04 Classification: MEMBRANE PROTEIN |
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Bordetella Filamentous Hemagglutinin (Fhab) C-Terminal Domain Bound To Microtubules
Organism: Bordetella bronchiseptica rb50, Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-02-25 Classification: TOXIN Ligands: GDP, TA1, GTP, MG |
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Crystal Structure Of The Sla-1*0808 Allele And Asfv Antigenic Peptide At 1.8 A Resolution
Organism: Sus scrofa, Asfivirus
Method: X-RAY DIFFRACTION Resolution:1.56 Å Release Date: 2026-02-11 Classification: IMMUNE SYSTEM |
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Tubulin Cofactors D,E,G,C And Tubulin Complex -- Tbcc N Terminus Bound To Tubulin
Organism: Saccharomyces cerevisiae, Escherichia coli, Sus scrofa
Method: ELECTRON MICROSCOPY Resolution:3.80 Å Release Date: 2026-02-04 Classification: CYTOSOLIC PROTEIN Ligands: GTP, GDP |
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Tubulin Cofactors D,E,G,C Bound To Tubulin Dimer -- Tbcc N Terminus Unbound
Organism: Saccharomyces cerevisiae, Escherichia coli, Sus scrofa
Method: ELECTRON MICROSCOPY Resolution:3.80 Å Release Date: 2026-02-04 Classification: CYTOSOLIC PROTEIN Ligands: GTP, GDP |
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Organism: Saccharomyces cerevisiae, Escherichia coli, Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-02-04 Classification: CYTOSOLIC PROTEIN Ligands: GTP, GDP |
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Organism: Saccharomyces cerevisiae, Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-02-04 Classification: CYTOSOLIC PROTEIN Ligands: GTP, GDP |
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Cryo-Em Structure Of The Sah Domain Of Caenorhabditis Elegans Icp-1 Bound To The Paclitaxel-Stabilized Microtubule
Organism: Caenorhabditis elegans, Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-02-04 Classification: CELL CYCLE Ligands: GTP, ZN, MG, GDP, TA1 |
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Cryo-Em Structure Of The Sah Domain Of Human Incenp Bound To The Paclitaxel-Stabilized Microtubule
Organism: Homo sapiens, Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-02-04 Classification: CELL CYCLE Ligands: GTP, ZN, MG, GDP, TA1 |
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Cryo-Em Structure Of The Human Hec1-Nuf2 Dimer Bound To The Paclitaxel-Stabilized Microtubule
Organism: Homo sapiens, Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-02-04 Classification: CELL CYCLE Ligands: GTP, MG, GDP, TA1 |
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Cryo-Em Structure Of The Xenopus Laevis Mitotic Centromere-Associated Kinesin (Mcak) Bound To The Paclitaxel-Stabilized Microtubule
Organism: Xenopus laevis, Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-02-04 Classification: CELL CYCLE Ligands: GTP, MG, GDP, TA1 |
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Cryo-Em Structure Of The Xenopus Laevis Mitotic Centromere-Associated Kinesin (Mcak) Bound To The Paclitaxel-Stabilized Microtubule
Organism: Xenopus laevis, Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-02-04 Classification: CELL CYCLE Ligands: GTP, MG, GDP, TA1 |
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Cryo-Em Structure Of The Xenopus Laevis Mitotic Centromere-Associated Kinesin (Mcak) Bound To The Paclitaxel-Stabilized Microtubule
Organism: Xenopus laevis, Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-02-04 Classification: CELL CYCLE Ligands: MG, GTP, GDP, TA1 |
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Organism: Sus scrofa
Method: ELECTRON MICROSCOPY Resolution:3.26 Å Release Date: 2026-01-28 Classification: SIGNALING PROTEIN Ligands: NAG |
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Motor Domains Of Phi-Like Human Dynein-1 Bound To Dynactin-P150Glued And Lis1
Organism: Homo sapiens, Sus scrofa
Method: ELECTRON MICROSCOPY Resolution:3.93 Å Release Date: 2026-01-28 Classification: MOTOR PROTEIN Ligands: ADP, ATP, MG |
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Dynactin And Dynein-1 Tail Region Of Dynein-Dynactin Complex On Microtubule In The Presence Of Lis1
Organism: Sus scrofa, Homo sapiens
Method: ELECTRON MICROSCOPY Resolution:4.07 Å Release Date: 2026-01-28 Classification: MOTOR PROTEIN Ligands: ADP, ATP, ZN |
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Pol Ii-Dsif-Spt6-Paf1C-Tfiis-Iws1-Elof1-Ledgf-Nucleosome Activated Elongation Complex Composite Map T
Organism: Homo sapiens, Xenopus laevis, Synthetic construct, Sus scrofa
Method: ELECTRON MICROSCOPY Release Date: 2026-01-21 Classification: TRANSCRIPTION Ligands: ZN, MG |




















