GlycoNAVI-Proteins is dataset of glycan and protein information. This is the content of GlycoNAVI.
Source | Last Updated |
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GlycoNAVI Proteins | December 18, 2024 |
PDB ID | UniProt ID | Title ▲ | Descriptor |
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2WIN | P00751 | C3 convertase (C3bBb) stabilized by SCIN | |
2WIN | 2WIN | C3 convertase (C3bBb) stabilized by SCIN | |
2WIN | P00751 | C3 convertase (C3bBb) stabilized by SCIN | |
2WIN | 2WIN | C3 convertase (C3bBb) stabilized by SCIN | |
2WIN | Q6GFB4 | C3 convertase (C3bBb) stabilized by SCIN | |
2WIN | Q6GFB4 | C3 convertase (C3bBb) stabilized by SCIN | |
7BAG | P01024 | C3b in complex with CP40 | |
7BAG | 7BAG | C3b in complex with CP40 | |
2HHU | Q5KWC1 | C:O6-methyl-guanine in the polymerase postinsertion site (-1 basepair position) | |
2HHT | Q5KWC1 | C:O6-methyl-guanine pair in the polymerase-2 basepair position | |
7DSD | E7F2J4 | CALHM1 close state with disordered CTH | |
7DSE | E7F2J4 | CALHM1 close state with ordered CTH | |
7DSC | E7F2J4 | CALHM1 open state with disordered CTH | |
2W9L | P78310 | CANINE ADENOVIRUS TYPE 2 FIBRE HEAD IN COMPLEX WITH CAR DOMAIN D1 AND SIALIC ACID | |
2W9L | 2W9L | CANINE ADENOVIRUS TYPE 2 FIBRE HEAD IN COMPLEX WITH CAR DOMAIN D1 AND SIALIC ACID | |
2W9L | Q65914 | CANINE ADENOVIRUS TYPE 2 FIBRE HEAD IN COMPLEX WITH CAR DOMAIN D1 AND SIALIC ACID | |
2W9L | 2W9L | CANINE ADENOVIRUS TYPE 2 FIBRE HEAD IN COMPLEX WITH CAR DOMAIN D1 AND SIALIC ACID | |
2W9L | Q65914 | CANINE ADENOVIRUS TYPE 2 FIBRE HEAD IN COMPLEX WITH CAR DOMAIN D1 AND SIALIC ACID | |
4B1L | P05656 | CARBOHYDRATE BINDING MODULE CBM66 FROM BACILLUS SUBTILIS | |
4B1M | P05656 | CARBOHYDRATE BINDING MODULE CBM66 FROM BACILLUS SUBTILIS | |
1DO4 | P02185 | CARBONMONOXY-MYOGLOBIN (MUTANT L29W) AFTER PHOTOLYSIS AT T<180K | |
1DO3 | P02185 | CARBONMONOXY-MYOGLOBIN (MUTANT L29W) AFTER PHOTOLYSIS AT T>180K | |
1DO7 | P02185 | CARBONMONOXY-MYOGLOBIN (MUTANT L29W) REBINDING STRUCTURE AFTER PHOTOLYSIS AT T< 180K | |
1DO1 | P02185 | CARBONMONOXY-MYOGLOBIN MUTANT L29W AT 105K | |
1QH6 | Q7SIE3 | CATALYSIS AND SPECIFICITY IN ENZYMATIC GLYCOSIDE HYDROLASES: A 2,5B CONFORMATION FOR THE GLYCOSYL-ENZYME INTERMIDIATE REVEALED BY THE STRUCTURE OF THE BACILLUS AGARADHAERENS FAMILY 11 XYLANASE | |
1QH7 | Q7SIE3 | CATALYSIS AND SPECIFICITY IN ENZYMATIC GLYCOSIDE HYDROLASES: A 2,5B CONFORMATION FOR THE GLYCOSYL-ENZYME INTERMIDIATE REVEALED BY THE STRUCTURE OF THE BACILLUS AGARADHAERENS FAMILY 11 XYLANASE | |
1CGU | P30920 | CATALYTIC CENTER OF CYCLODEXTRIN GLYCOSYLTRANSFERASE DERIVED FROM X-RAY STRUCTURE ANALYSIS COMBINED WITH SITE-DIRECTED MUTAGENESIS | |
6THJ | A8ATR6 | CBDP35 Native structure | |
6CEL | P00725 | CBH1 (E212Q) CELLOPENTAOSE COMPLEX | |
5CEL | P00725 | CBH1 (E212Q) CELLOTETRAOSE COMPLEX | |
7CEL | P00725 | CBH1 (E217Q) IN COMPLEX WITH CELLOHEXAOSE AND CELLOBIOSE | |
1DY4 | P62694 | CBH1 IN COMPLEX WITH S-PROPRANOLOL | |
1W8U | Q9C171 | CBM29-2 mutant D83A complexed with mannohexaose: Probing the Mechanism of Ligand Recognition by Family 29 Carbohydrate Binding Modules | |
1W8U | 1W8U | CBM29-2 mutant D83A complexed with mannohexaose: Probing the Mechanism of Ligand Recognition by Family 29 Carbohydrate Binding Modules | |
1W8U | Q9C171 | CBM29-2 mutant D83A complexed with mannohexaose: Probing the Mechanism of Ligand Recognition by Family 29 Carbohydrate Binding Modules | |
1W8U | 1W8U | CBM29-2 mutant D83A complexed with mannohexaose: Probing the Mechanism of Ligand Recognition by Family 29 Carbohydrate Binding Modules | |
1W8T | Q9C171 | CBM29-2 mutant K74A complexed with cellulohexaose: Probing the Mechanism of Ligand Recognition by Family 29 Carbohydrate Binding Modules | |
1W8T | 1W8T | CBM29-2 mutant K74A complexed with cellulohexaose: Probing the Mechanism of Ligand Recognition by Family 29 Carbohydrate Binding Modules | |
1W8T | Q9C171 | CBM29-2 mutant K74A complexed with cellulohexaose: Probing the Mechanism of Ligand Recognition by Family 29 Carbohydrate Binding Modules | |
1W8T | 1W8T | CBM29-2 mutant K74A complexed with cellulohexaose: Probing the Mechanism of Ligand Recognition by Family 29 Carbohydrate Binding Modules | |
7D2A | A0A3B6UEP6 | CBM32 of AlyQ in complex with 4,5-unsaturated mannuronic acid | |
1GU3 | P14090 | CBM4 structure and function | |
1GUI | Q9WXN1 | CBM4 structure and function | |
5FRA | A0A0H2YQR1 | CBM40_CPF0721-6'SL | |
2YFZ | D1NNT8 | CBM62 FROM CLOSTRIDIUM THERMOCELLUM XYL5A | |
2YG0 | D1NNT8 | CBM62 FROM CLOSTRIDIUM THERMOCELLUM XYL5A | |
2YB7 | D1NNT8 | CBM62 in complex with 6-alpha-D-Galactosyl-mannotriose | |
1UXX | O52780 | CBM6ct from Clostridium thermocellum in complex with xylopentaose | |
7UWV | A0A2N0UYM2 | CBM74 from Ruminococcus bromii Sas6 with maltodecaose | |
7RU8 | P0DTC2 | CC6.30 fragment antigen binding in complex with SARS-CoV-2-6P-Mut7 S protein (RBD/Fv local refinement) |
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Supported by JST NBDC Grant Number JPMJND2204
Partly supported by NIH Common Fund Grant #1U01GM125267-01
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Last updated: December 9, 2024