Wang_2016_J.Biomol.Struct.Dyn_34_749

Reference

Title : Exploration of the chlorpyrifos escape pathway from acylpeptide hydrolases using steered molecular dynamics simulations - Wang_2016_J.Biomol.Struct.Dyn_34_749
Author(s) : Wang D , Jin H , Wang J , Guan S , Zhang Z , Han W
Ref : J Biomol Struct Dyn , 34 :749 , 2016
Abstract :

Acylpeptide hydrolases (APH) catalyze the removal of an N-acylated amino acid from blocked peptides. APH is significantly more sensitive than acetylcholinesterase, a target of Alzheimer's disease, to inhibition by organophosphorus (OP) compounds. Thus, OP compounds can be used as a tool to probe the physiological functions of APH. Here, we report the results of a computational study of molecular dynamics simulations of APH bound to the OP compounds and an exploration of the chlorpyrifos escape pathway using steered molecular dynamics (SMD) simulations. In addition, we apply SMD simulations to identify potential escape routes of chlorpyrifos from hydrolase hydrophobic cavities in the APH-inhibitor complex. Two previously proposed APH pathways were reliably identified by CAVER 3.0, with the estimated relative importance of P1 > P2 for its size. We identify the major pathway, P2, using SMD simulations, and Arg526, Glu88, Gly86, and Asn65 are identified as important residues for the ligand leaving via P2. These results may help in the design of APH-targeting drugs with improved efficacy, as well as in understanding APH selectivity of the inhibitor binding in the prolyl oligopeptidase family.

PubMedSearch : Wang_2016_J.Biomol.Struct.Dyn_34_749
PubMedID: 26155973
Gene_locus related to this paper: aerpe-APE1547

Related information

Inhibitor Chlorpyrifos
Substrate Ac-Leu-p-nitroanilide
Gene_locus aerpe-APE1547

Citations formats

Wang D, Jin H, Wang J, Guan S, Zhang Z, Han W (2016)
Exploration of the chlorpyrifos escape pathway from acylpeptide hydrolases using steered molecular dynamics simulations
J Biomol Struct Dyn 34 :749

Wang D, Jin H, Wang J, Guan S, Zhang Z, Han W (2016)
J Biomol Struct Dyn 34 :749