Crystallization (Comment) | Organism |
---|---|
empirical and thermodynamic integration pKa estimates, along with conventional molecular dynamics simulations based on PDB entries 1ckm and 1ckn. Magnesium binding likely activates the lysine nucleophile by increasing its acidity and by biasing the deprotonated nucleophile into conformations conducive to intermediate formation | Paramecium bursaria Chlorella virus 1 |
Metals/Ions | Comment | Organism | Structure |
---|---|---|---|
Mg2+ | magnesium binding likely activates the lysine nucleophile by increasing its acidity and by biasing the deprotonated nucleophile into conformations conducive to intermediate formation | Paramecium bursaria Chlorella virus 1 |
Organism | UniProt | Comment | Textmining |
---|---|---|---|
Paramecium bursaria Chlorella virus 1 | Q84424 | - |
- |
Reaction | Comment | Organism | Reaction ID |
---|---|---|---|
GTP + (5')ppPur-mRNA = diphosphate + G(5')pppPur-mRNA | magnesium binding likely activates the lysine nucleophile by increasing its acidity and by biasing the deprotonated nucleophile into conformations conducive to intermediate formation | Paramecium bursaria Chlorella virus 1 |
Synonyms | Comment | Organism |
---|---|---|
guanylyltransferase mRNA capping | - |
Paramecium bursaria Chlorella virus 1 |