GlycoNAVI-Proteins is dataset of glycan and protein information. This is the content of GlycoNAVI.
Source | Last Updated |
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GlycoNAVI Proteins | November 28, 2024 |
PDB ID | UniProt ID ▼ | Title | Descriptor |
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8APJ | A0A161CM65 | rotational state 2d of Trypanosoma brucei mitochondrial ATP synthase | |
8APK | A0A161CM65 | rotational state 3 of the Trypanosoma brucei mitochondrial ATP synthase dimer | |
8AP6 | A0A161CM65 | Trypanosoma brucei mitochondrial F1Fo ATP synthase dimer | |
8BGO | A0A160VQZ8 | N,N-diacetylchitobiose deacetylase from Pyrococcus chitonophagus with substrate N,N-diacetylchitobiose | |
6URA | A0A160T9D2 | Crystal structure of RUBISCO from Promineofilum breve | |
6FI2 | A0A160EBC2 | VexL: A periplasmic depolymerase provides new insight into ABC transporter-dependent secretion of bacterial capsular polysaccharides | VexL |
7T6X | A0A159UHX2 | Cryo-EM structure of full-length hepatitis C virus E1E2 glycoprotein in complex with AR4A, AT12009, and IGH505 Fabs | |
6RQJ | A0A158RFT5 | Structure of human complement C5 complexed with tick inhibitors OmCI, RaCI1 and CirpT1 | Complement C5, Putative 8.9 kDa family member |
5XVS | A0A154EJU5 | Crystal structure of UDP-GlcNAc 2-epimerase NeuC complexed with UDP | |
6DFE | A0A152KUZ3 | The structure of a ternary complex of E. coli WaaC | |
7O0W | A0A143BK87 | Cryo-EM structure of the RC-dLH complex (model_1b) from Gemmatimonas phototrophica at 2.47 A | |
7O0X | A0A143BK87 | Cryo-EM structure (model_2b) of the RC-dLH complex from Gemmatimonas phototrophica at 2.44 A | |
7O0U | A0A143BJ28 | Cryo-EM structure (model_1a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.4 A | |
7O0V | A0A143BJ28 | Cryo-EM structure (model_2a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.5 A | |
7O0W | A0A143BJ28 | Cryo-EM structure of the RC-dLH complex (model_1b) from Gemmatimonas phototrophica at 2.47 A | |
7O0X | A0A143BJ28 | Cryo-EM structure (model_2b) of the RC-dLH complex from Gemmatimonas phototrophica at 2.44 A | |
7O0U | A0A143BHS8 | Cryo-EM structure (model_1a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.4 A | |
7O0V | A0A143BHS8 | Cryo-EM structure (model_2a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.5 A | |
7O0W | A0A143BHS8 | Cryo-EM structure of the RC-dLH complex (model_1b) from Gemmatimonas phototrophica at 2.47 A | |
7O0X | A0A143BHS8 | Cryo-EM structure (model_2b) of the RC-dLH complex from Gemmatimonas phototrophica at 2.44 A | |
7O0U | A0A143BHS7 | Cryo-EM structure (model_1a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.4 A | |
7O0V | A0A143BHS7 | Cryo-EM structure (model_2a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.5 A | |
7O0W | A0A143BHS7 | Cryo-EM structure of the RC-dLH complex (model_1b) from Gemmatimonas phototrophica at 2.47 A | |
7O0X | A0A143BHS7 | Cryo-EM structure (model_2b) of the RC-dLH complex from Gemmatimonas phototrophica at 2.44 A | |
7O0U | A0A143BHR6 | Cryo-EM structure (model_1a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.4 A | |
7O0V | A0A143BHR6 | Cryo-EM structure (model_2a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.5 A | |
7O0W | A0A143BHR6 | Cryo-EM structure of the RC-dLH complex (model_1b) from Gemmatimonas phototrophica at 2.47 A | |
7O0X | A0A143BHR6 | Cryo-EM structure (model_2b) of the RC-dLH complex from Gemmatimonas phototrophica at 2.44 A | |
7O0U | A0A143BHR2 | Cryo-EM structure (model_1a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.4 A | |
7O0V | A0A143BHR2 | Cryo-EM structure (model_2a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.5 A | |
7O0W | A0A143BHR2 | Cryo-EM structure of the RC-dLH complex (model_1b) from Gemmatimonas phototrophica at 2.47 A | |
7O0X | A0A143BHR2 | Cryo-EM structure (model_2b) of the RC-dLH complex from Gemmatimonas phototrophica at 2.44 A | |
8EJG | A0A142I7X5 | Structure of lineage VII Lassa virus glycoprotein complex (strain Togo/2016/7082) | |
5U4W | A0A142I5B9 | Cryo-EM Structure of Immature Zika Virus | E protein, pr domain, Protein E, M protein |
8CXI | A0A142DS37 | Structures of Zika Virus in Complex with Antibodies Targeting E Dimer Epitopes and Basis for Neutralization Efficacy | |
8R3B | A0A140UHM9 | Cocrystal form I of the Pent - sulfonato-calix[8]arene complex | |
8R3C | A0A140UHM9 | Cocrystal form II of the Pent - sulfonato-calix[8]arene complex | |
8R3D | A0A140UHM9 | Crystal structure of Pent only at pH 8.8 | |
6GTV | A0A140UH97 | Crystal structure of a FimH*DsG complex from E.coli F18 with bound trimannose | |
6GTZ | A0A140UH97 | Crystal structure of a FimH*DsG complex from E.coli F18 with bound dimannoside Man(alpha1-3)Man in space group P21 | |
5IHJ | A0A140QW15 | Fusion of Maltose-binding Protein and PilA from Acinetobacter baumannii BIDMC57 | Maltose-binding periplasmic protein,PilA fusion protein |
5Z0R | A0A140NCD0 | Structural insight into the Zika virus capsid encapsulating the viral genome | |
5Z0V | A0A140NCD0 | Structural insight into the Zika virus capsid encapsulating the viral genome | |
6GF6 | A0A140JXP0 | Molecular basis of egg coat filament cross-linking: high-resolution structure of the partially deglycosylated ZP1 ZP-N1 domain homodimer | |
6GF8 | A0A140JXP0 | Molecular basis of egg coat filament cross-linking: structure of the glycosylated ZP1 ZP-N1 domain homodimer | |
6GF7 | A0A140JXP0 | Molecular basis of egg coat filament cross-linking: Zn-SAD structure of the partially deglycosylated ZP1 ZP-N1 domain homodimer | Zona pellucida sperm-binding protein 1 |
6BFU | A0A140ES81 | Glycan shield and fusion activation of a deltacoronavirus spike glycoprotein fine-tuned for enteric infections | Spike protein |
6NQD | A0A140EMT3 | Cryo-EM structure of T/F100 SOSIP.664 HIV-1 Env trimer in complex with 8ANC195 Fab | T/F100 Env gp120, T/F100 Env gp41, 8ANC195 G52K5 heavy chain, IG gamma-1 chain,8ANC195 G52K5 light chain |
8DOK | A0A140EMT3 | Cryo-EM structure of T/F100 SOSIP.664 HIV-1 Env trimer in complex with 8ANC195 and 10-1074 | |
7DW8 | A0A140EH91 | Structure of a novel beta-mannanase BaMan113A with mannobiose, N236Y mutation. |
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Last updated: August 19, 2024