Jin_2015_Int.J.Mol.Sci_16_6217

Reference

Title : Molecular dynamics simulations of acylpeptide hydrolase bound to chlorpyrifosmethyl oxon and dichlorvos - Jin_2015_Int.J.Mol.Sci_16_6217
Author(s) : Jin H , Zhou Z , Wang D , Guan S , Han W
Ref : Int J Mol Sci , 16 :6217 , 2015
Abstract :

Acylpeptide hydrolases (APHs) catalyze the removal of N-acylated amino acids from blocked peptides. Like other prolyloligopeptidase (POP) family members, APHs are believed to be important targets for drug design. To date, the binding pose of organophosphorus (OP) compounds of APH, as well as the different OP compounds binding and inducing conformational changes in two domains, namely, alpha/beta hydrolase and beta-propeller, remain poorly understood. We report a computational study of APH bound to chlorpyrifosmethyl oxon and dichlorvos. In our docking study, Val471 and Gly368 are important residues for chlorpyrifosmethyl oxon and dichlorvos binding. Molecular dynamics simulations were also performed to explore the conformational changes between the chlorpyrifosmethyl oxon and dichlorvos bound to APH, which indicated that the structural feature of chlorpyrifosmethyl oxon binding in APH permitted partial opening of the beta-propeller fold and allowed the chlorpyrifosmethyl oxon to easily enter the catalytic site. These results may facilitate the design of APH-targeting drugs with improved efficacy.

PubMedSearch : Jin_2015_Int.J.Mol.Sci_16_6217
PubMedID: 25794283
Gene_locus related to this paper: aerpe-APE1547

Related information

Gene_locus aerpe-APE1547

Citations formats

Jin H, Zhou Z, Wang D, Guan S, Han W (2015)
Molecular dynamics simulations of acylpeptide hydrolase bound to chlorpyrifosmethyl oxon and dichlorvos
Int J Mol Sci 16 :6217

Jin H, Zhou Z, Wang D, Guan S, Han W (2015)
Int J Mol Sci 16 :6217