Meden_2023_Eur.J.Med.Chem_247_115048

Reference

Title : Pseudo-irreversible butyrylcholinesterase inhibitors: Structure-activity relationships, computational and crystallographic study of the N-dialkyl O-arylcarbamate warhead - Meden_2023_Eur.J.Med.Chem_247_115048
Author(s) : Meden A , Knez D , Brazzolotto X , Modeste F , Perdih A , Pislar A , Zorman M , Zorovic M , Denic M , Pajk S , Zivin M , Nachon F , Gobec S
Ref : Eur Journal of Medicinal Chemistry , 247 :115048 , 2023
Abstract :

Alongside reversible butyrylcholinesterase inhibitors, a plethora of covalent butyrylcholinesterase inhibitors have been reported in the literature, typically pseudo-irreversible carbamates. For these latter, however, most cases lack full confirmation of their covalent mode of action. Additionally, the available reports regarding the structure-activity relationships of the O-arylcarbamate warhead are incomplete. Therefore, a follow-up on a series of pseudo-irreversible covalent carbamate human butyrylcholinesterase inhibitors and the structure-activity relationships of the N-dialkyl O-arylcarbamate warhead are presented in this study. The covalent mechanism of binding was tested by IC(50) time-dependency profiles, and sequentially and increasingly confirmed by kinetic analysis, whole protein LC-MS, and crystallographic analysis. Computational studies provided valuable insights into steric constraints and identified problematic, bulky carbamate warheads that cannot reach and carbamoylate the catalytic Ser198. Quantum mechanical calculations provided further evidence that steric effects appear to be a key factor in determining the covalent binding behaviour of these carbamate cholinesterase inhibitors and their duration of action. Additionally, the introduction of a clickable terminal alkyne moiety into one of the carbamate N-substituents and in situ derivatisation with azide-containing fluorophore enabled fluorescent labelling of plasma human butyrylcholinesterase. This proof-of-concept study highlights the potential of this novel approach and for these compounds to be further developed as clickable molecular probes for investigating tissue localisation and activity of cholinesterases.

PubMedSearch : Meden_2023_Eur.J.Med.Chem_247_115048
PubMedID: 36586299
Gene_locus related to this paper: human-BCHE

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Citations formats

Meden A, Knez D, Brazzolotto X, Modeste F, Perdih A, Pislar A, Zorman M, Zorovic M, Denic M, Pajk S, Zivin M, Nachon F, Gobec S (2023)
Pseudo-irreversible butyrylcholinesterase inhibitors: Structure-activity relationships, computational and crystallographic study of the N-dialkyl O-arylcarbamate warhead
Eur Journal of Medicinal Chemistry 247 :115048

Meden A, Knez D, Brazzolotto X, Modeste F, Perdih A, Pislar A, Zorman M, Zorovic M, Denic M, Pajk S, Zivin M, Nachon F, Gobec S (2023)
Eur Journal of Medicinal Chemistry 247 :115048