Title : Prediction of the GTPase activities by using the semiempirical molecular orbital theory.

Pub. Date : 1998 May 5

PMID : 9871712






3 Functional Relationships(s)
Download
Sentence
Compound Name
Protein Name
Organism
1 Assuming that substrate-assisted catalysis is the mechanism of GTP hydrolysis for ras p21 and other GTP-binding proteins, we used the PM3 semiempirical molecular orbital method to predict from the calculated reaction profiles of GTP hydrolysis reactions the changes in GTPase activities caused by mutations. Guanosine Triphosphate H3 histone pseudogene 16 Homo sapiens
2 Assuming that substrate-assisted catalysis is the mechanism of GTP hydrolysis for ras p21 and other GTP-binding proteins, we used the PM3 semiempirical molecular orbital method to predict from the calculated reaction profiles of GTP hydrolysis reactions the changes in GTPase activities caused by mutations. Guanosine Triphosphate H3 histone pseudogene 16 Homo sapiens
3 Assuming that substrate-assisted catalysis is the mechanism of GTP hydrolysis for ras p21 and other GTP-binding proteins, we used the PM3 semiempirical molecular orbital method to predict from the calculated reaction profiles of GTP hydrolysis reactions the changes in GTPase activities caused by mutations. Guanosine Triphosphate H3 histone pseudogene 16 Homo sapiens