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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6NKN | P07470 | Time-resolved SFX structure of the PR intermediate of cytochrome c oxidase at room temperature | |
6NKN | P13183 | Time-resolved SFX structure of the PR intermediate of cytochrome c oxidase at room temperature | |
6NKN | P00430 | Time-resolved SFX structure of the PR intermediate of cytochrome c oxidase at room temperature | |
6NKN | P10175 | Time-resolved SFX structure of the PR intermediate of cytochrome c oxidase at room temperature | |
7E6Y | Q8RUT8 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: 1 microsecond structure | |
7E6Y | Q93WP2 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: 1 microsecond structure | |
7E71 | Q8RUT8 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: 1 ms structure | |
7E71 | Q93WP2 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: 1 ms structure | |
7E70 | Q8RUT8 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: 250 microsecond structure | |
7E70 | Q93WP2 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: 250 microsecond structure | |
7E6X | Q8RUT8 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: 4 ms structure | |
7E6X | Q93WP2 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: 4 ms structure | |
7E6Z | Q8RUT8 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: 50 microsecond structure | |
7E6Z | Q93WP2 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: 50 microsecond structure | |
7C86 | 7C86 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: Dark state structure | |
7C86 | Q8L435 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: Dark state structure | |
7C86 | 7C86 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: Dark state structure | |
7C86 | Q8L435 | Time-resolved serial femtosecond crystallography reveals early structural changes in channelrhodopsin: Dark state structure | |
8B21 | Q9S5X0 | Time-resolved structure of K+-dependent Na+-PPase from Thermotoga maritima 0-60-seconds post reaction initiation with Na+ | |
5GLZ | 5GLZ | Tl-gal with Glucose | |
5GLT | 5GLT | Tl-gal with LNT | |
5GLW | 5GLW | Tl-gal with LacNAc | |
5GLU | 5GLU | Tl-gal with SiaLac | |
5GM0 | 5GM0 | Tl-gal with lactose | |
8AD2 | Q94EW1 | Tobacco lectin Nictaba in complex with triacetylchitotriose | |
7WV3 | O15455 | Toll-like receptor3 linear cluster | |
2VJA | P04058 | Torpedo Californica Acetylcholinesterase In Complex With A Non Hydrolysable Substrate Analogue, 4-Oxo-N,N,N- Trimethylpentanaminium - Orthorhombic space group - Dataset A at 100K | |
2VJC | P04058 | Torpedo Californica Acetylcholinesterase In Complex With A Non Hydrolysable Substrate Analogue, 4-Oxo-N,N,N- Trimethylpentanaminium - Orthorhombic space group - Dataset A at 150K | |
2VJD | P04058 | Torpedo Californica Acetylcholinesterase In Complex With A Non Hydrolysable Substrate Analogue, 4-Oxo-N,N,N- Trimethylpentanaminium - Orthorhombic space group - Dataset C at 150K | |
2VJB | P04058 | Torpedo Californica Acetylcholinesterase In Complex With A Non Hydrolysable Substrate Analogue, 4-Oxo-N,N,N- Trimethylpentanaminium - Orthorhombic space group - Dataset D at 100K | |
2J3Q | P04058 | Torpedo acetylcholinesterase complexed with fluorophore thioflavin T | |
6EZH | P04058 | Torpedo californica AChE in complex with indolic multi-target directed ligand | |
6EZG | P04058 | Torpedo californica AChE in complex with indolic multi-target directed ligand | |
3ZV7 | P04058 | Torpedo californica Acetylcholinesterase Inhibition by Bisnorcymserine | |
2XI4 | P04058 | Torpedo californica Acetylcholinesterase in Complex with Aflatoxin B1 (Orthorhombic Space Group) | |
6G4M | P04058 | Torpedo californica acetylcholinesterase bound to uncharged hybrid reactivator 1 | |
6G4N | P04058 | Torpedo californica acetylcholinesterase bound to uncharged hybrid reactivator 2 | |
2VQ6 | P04058 | Torpedo californica acetylcholinesterase complexed with 2-PAM | |
7B8E | P04058 | Torpedo californica acetylcholinesterase complexed with Ca+2 | |
7B38 | P04058 | Torpedo californica acetylcholinesterase complexed with Mg+2 | |
2CMF | P04058 | Torpedo californica acetylcholinesterase complexed with alkylene- linked bis-tacrine dimer (5 carbon linker) | |
2CKM | P04058 | Torpedo californica acetylcholinesterase complexed with alkylene- linked bis-tacrine dimer (7 carbon linker) | |
2C58 | P04058 | Torpedo californica acetylcholinesterase in complex with 20mM acetylthiocholine | |
2C5G | P04058 | Torpedo californica acetylcholinesterase in complex with 20mM thiocholine | |
2C4H | P04058 | Torpedo californica acetylcholinesterase in complex with 500mM acetylthiocholine | |
5NUU | P04058 | Torpedo californica acetylcholinesterase in complex with a chlorotacrine-tryptophan hybrid inhibitor | |
2C5F | P04058 | Torpedo californica acetylcholinesterase in complex with a non hydrolysable substrate analogue, 4-oxo-N,N,N-trimethylpentanaminium | |
5NAU | P04058 | Torpedo californica acetylcholinesterase in complex with a non-chiral donepezil-like compound 20 | |
5NAP | P04058 | Torpedo californica acetylcholinesterase in complex with a non-chiral donepezil-like inhibitor 17 | |
7QKO | P02710 | Torpedo muscle-type nicotinic acetylcholine receptor - Resting conformation |
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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