Driant_2017_Chembiochem_18_666

Reference

Title : On the Influence of the Protonation States of Active Site Residues on AChE Reactivation: A QM\/MM Approach - Driant_2017_Chembiochem_18_666
Author(s) : Driant T , Nachon F , Ollivier C , Renard PY , Derat E
Ref : Chembiochem , 18 :666 , 2017
Abstract :

Acetylcholinesterase (AChE), an enzyme of the serine hydrolase superfamily, is a mediator of signal transmission at cholinergic synapses by catalyzing acetylcholine cleavage into acetate and choline. This enzyme is vulnerable to covalent inhibition by organophosphate compounds (like VX). Covalent inhibition of AChE does not revert spontaneously. Known reactivator compounds have limited action in restoring catalytic activity. QM/MM simulations of VX-inhibited AChE reactivation by pralidoxime (2-PAM), a classical reactivator, were performed. These afforded a broad view of the effect of protonation states of active-site residues, and provide evidence for the role of Glu202, which needs to be protonated for reactivation to occur. In situ deprotonation of 2-PAM for both protonation states of Glu202 showed that His447 is able to deprotonate 2-PAM with the assistance of Glu202. Because the active site of serine hydrolases is highly conserved, this work provides new insights on the interplay between the catalytic triad residues and this glutamate, newly identified as protonatable.

PubMedSearch : Driant_2017_Chembiochem_18_666
PubMedID: 28106328

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Citations formats

Driant T, Nachon F, Ollivier C, Renard PY, Derat E (2017)
On the Influence of the Protonation States of Active Site Residues on AChE Reactivation: A QM\/MM Approach
Chembiochem 18 :666

Driant T, Nachon F, Ollivier C, Renard PY, Derat E (2017)
Chembiochem 18 :666