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Search Count: 126

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9LUW image
Enhancing Monodispersity And Thermal Stability Of Human H-Ferritin For Improved Applications In Nanocarrier Systems
Organism: Homo sapiens
Method: X-RAY DIFFRACTION
Resolution:2.00 Å Release Date: 2026-03-04
Classification: BIOSYNTHETIC PROTEIN
Ligands: FE

9M87 image
Mo1033, Conopressin From Conus Monile
Organism: Conus monile
Method: SOLUTION NMR
Release Date: 2026-02-18
Classification: TOXIN

9LQ2 image
Structure Of Human Dimeric Nlrp7-Tcl1A Complex
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Resolution:3.58 Å Release Date: 2025-12-10
Classification: SIGNALING PROTEIN

9LQ4 image
Structure Of The Human Monomeric Nlrp7-Tcl1A Complex
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Resolution:4.12 Å Release Date: 2025-12-10
Classification: SIGNALING PROTEIN

9JXD image
Cryo-Em Structure Of Human Xpr1 In Apo State
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN

9JXE image
Cryo-Em Structure Of Apo Human Xpr1, Class 1, With One Visible Spx Domain
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Resolution:3.85 Å Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN

9JXF image
Cryo-Em Structure Of Apo Human Xpr1, Class 2, With Asymmetrically Dimerized Spx Domains
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Resolution:4.31 Å Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN

9JXG image
Cryo-Em Structure Of Apo Human Xpr1, Class 3, With Symmetrically Dimerized Spx Domains
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Resolution:3.75 Å Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN

9JXH image
Cryo-Em Structure Of Human Xpr1 In Complex With Insp8
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN
Ligands: I8P

9JXI image
Cryo-Em Structure Of Human Xpr1 With Insp8 In An 'Arch-Like' Intermediate State Of The Spx Domain
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN
Ligands: I8P

9JXJ image
Cryo-Em Structure Of Human Xpr1 In A Closed State At Both The Extracellular And Intracellular Gates, Obtained Through Local Refinement
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN
Ligands: PO4

9JXK image
Cryo-Em Structure Of Human Xpr1 In A Closed State At The Intracellular Gate And An Open State At The Extracellular Gate, Obtained Through Local Refinement
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Resolution:3.38 Å Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN
Ligands: PO4

9JXL image
Cryo-Em Structure Of Human Xpr1 In An Open State At The Intracellular Gate And A Closed State At The Extracellular Gate, Obtained Through Local Refinement
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN
Ligands: PO4

9JXM image
Cryo-Em Structure Of One Subunit Of The Human Xpr1 Homodimer With Both The Intracellular And Extracellular Gates In An Open State, Obtained Through Local Refinement
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN
Ligands: PO4

9JXN image
Cryo-Em Structure Of Human Xpr1-R459C
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Resolution:3.12 Å Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN

9JXO image
Cryo-Em Structure Of Human Xpr1-G621A
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN

9JXP image
Cryo-Em Structure Of Human Xpr1-R570L
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN

9JXQ image
Complex Of Xpr1-Kidins220
Organism: Homo sapiens
Method: ELECTRON MICROSCOPY
Resolution:3.44 Å Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN

9JXR image
Cryo-Em Structure Of Drosophila Melanogaster Pxo-G604A
Organism: Drosophila melanogaster
Method: ELECTRON MICROSCOPY
Release Date: 2025-08-27
Classification: TRANSPORT PROTEIN

8YKR image
Enhancing The Gastric Stability Of Ferritin Nanocage Via Computational-Assisted Disulfide Bond Engineering
Organism: Penaeus japonicus
Method: X-RAY DIFFRACTION
Resolution:2.50 Å Release Date: 2025-03-19
Classification: BIOSYNTHETIC PROTEIN
Ligands: FE
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