Li_2023_Chem.Biol.Interact_372_110369

Reference

Title : The kinetic and molecular docking analysis of interactions between three V-type nerve agents and four human cholinesterases - Li_2023_Chem.Biol.Interact_372_110369
Author(s) : Li K , Liu Y , Li Q , Guo L , Xie J
Ref : Chemico-Biological Interactions , 372 :110369 , 2023
Abstract :

G and V-type nerve agents represent the most toxic chemical warfare agents. Their primary toxicity was the consequence of the covalent inhibition of the pivotal acetylcholinesterase (AChE), which induces overstimulation of cholinergic receptors and overaccumulation of cholines, eventually leading to death by respiratory arrest. The inhibitory and reactivation kinetics of cholinesterase (ChE) are essential for the toxicology and countermeasures of nerve agents. Medical defensive research on V-type nerve agents (V agents) has been mainly reported on VX and VR. Here we demonstrated the first systematical kinetic analysis between the type of ChE [native or recombinant human AChE and butyrylcholinesterase (BChE)] and three V agents, including VX, VR, and Vs, another isomer of VX, and highlighted the effects of native and recombinant ChE differences. The spontaneous reactivation and aging kinetics data of Vs-inhibited BChEs were firstly reported here. The results showed that AChE was more easily inhibited by three V agent compared to BChE, regardless of whether it is native or recombinant. The increased inhibitory potency order on AChE was VX, Vs, then VR, and on BChE was VX, then Vs and VR. The difference between native and recombinant ChE could influence the inhibition, aging, and spontaneous reactivation kinetics of three V agents, whether AChE or BChE, which was systematically revealed for the first time. For inhibition kinetics, the k(i) of three V agents for recombinant AChE was significantly higher than native AChE, and the stronger the inhibitory potency of V agents, the more pronounced difference in k(i). In terms of aging and spontaneous reactivation kinetics, recombinant ChE was found to be more prone to spontaneous reactivation, but more resistant to aging compared to native ChE, particularly for AChE. The performed covalent molecular docking results partially explained the effects of differences between native and recombinant ChE on enzyme kinetics from the perspective of binding energy and conformation.

PubMedSearch : Li_2023_Chem.Biol.Interact_372_110369
PubMedID: 36708975

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Citations formats

Li K, Liu Y, Li Q, Guo L, Xie J (2023)
The kinetic and molecular docking analysis of interactions between three V-type nerve agents and four human cholinesterases
Chemico-Biological Interactions 372 :110369

Li K, Liu Y, Li Q, Guo L, Xie J (2023)
Chemico-Biological Interactions 372 :110369