Zhang_2017_Ecotoxicol.Environ.Saf_138_215

Reference

Title : An enantiomer-based virtual screening approach: Discovery of chiral organophosphates as acetyl cholinesterase inhibitors - Zhang_2017_Ecotoxicol.Environ.Saf_138_215
Author(s) : Zhang A , Mu Y , Wu F
Ref : Ecotoxicology & Environmental Safety , 138 :215 , 2017
Abstract :

Chiral organophosphates (OPs) have been used widely around the world, very little is known about binding mechanisms with biological macromolecules. An in-depth understanding of the stereo selectivity of human AChE and discovering bioactive enantiomers of OPs can decrease health risks of these chiral chemicals. In the present study, a flexible molecular docking approach was conducted to investigate different binding modes of twelve phosphorus enantiomers. A pharmacophore model was then developed on basis of the bioactive conformations of these compounds. After virtual screening, twenty-four potential bioactive compounds were found, of which three compounds (Ethyl p-nitrophenyl phenylphosphonate (EPN), 1-naphthaleneacetic anhydride and N,4-dimethyl-N-phenyl-benzenesulfonamide) were tested by use of different in vitro assays. S-isomer of EPN was also found to exhibit greater inhibitory activity towards human AChE than the corresponding R-isomer. These findings affirm that stereochemistry plays a crucial role in virtual screening, and provide a new insight into designing safer organ phosphorus pesticides on human health.

PubMedSearch : Zhang_2017_Ecotoxicol.Environ.Saf_138_215
PubMedID: 28061415

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Citations formats

Zhang A, Mu Y, Wu F (2017)
An enantiomer-based virtual screening approach: Discovery of chiral organophosphates as acetyl cholinesterase inhibitors
Ecotoxicology & Environmental Safety 138 :215

Zhang A, Mu Y, Wu F (2017)
Ecotoxicology & Environmental Safety 138 :215