Structure–activity analysis of aging and reactivation of human butyrylcholinesterase inhibited by analogues of tabun

Author:

Carletti Eugénie1,Aurbek Nadine2,Gillon Emilie1,Loiodice Mélanie1,Nicolet Yvain3,Fontecilla-Camps Juan-Carlos3,Masson Patrick1,Thiermann Horst2,Nachon Florian1,Worek Franz2

Affiliation:

1. Unité d'Enzymologie, Département de Toxicologie, Centre de Recherches du Service de Santé des Armées (CRSSA), 24 av des Maquis du Grésivaudan, 38700 La Tronche, France

2. Bundeswehr Institute of Pharmacology and Toxicology, Neuherbergstrasse 11, 80937 Munich, Germany

3. Laboratoire de Cristallogenèse et Cristallographie des Protéines, Institut de Biologie Structurale (CEA-CNRS-UJF), 41 rue Jules Horowitz, 38027 Grenoble, France

Abstract

hBChE [human BChE (butyrylcholinesterase)] naturally scavenges OPs (organophosphates). This bioscavenger is currently in Clinical Phase I for pretreatment of OP intoxication. Phosphylated ChEs (cholinesterases) can undergo a spontaneous time-dependent process called ‘aging’ during which the conjugate is dealkylated, leading to creation of an enzyme that cannot be reactivated. hBChE inhibited by phosphoramidates such as tabun displays a peculiar resistance to oxime-mediated reactivation. We investigated the basis of oxime resistance of phosphoramidyl–BChE conjugates by determining the kinetics of inhibition, reactivation (obidoxime {1,1′-(oxybis-methylene) bis[4-(hydroxyimino) methyl] pyridinium dichloride}, TMB-4 [1,3-trimethylene-bis(4-hydroxyiminomethylpyridinium) dibromide], HLö 7 {1-[[[4-(aminocarbonyl) pyridinio]methoxy]methyl]-2,4-bis-[(hydroxyimino)methyl] pyridinium dimethanesulfonate)}, HI-6 {1-[[[4-(aminocarbonyl) pyridinio] methoxy] methyl]-2-[(hydroxyimino)methyl]pyridinium dichloride monohydrate} and aging, and the crystal structures of hBChE inhibited by different N-monoalkyl and N,N-dialkyl tabun analogues. The refined structures of aged hBChE conjugates show that aging proceeds through O-dealkylation of the P(R) enantiomer of N,N-diethyl and N-propyl analogues, with subsequent formation of a salt bridge preventing reactivation, similarly to a previous observation made on tabun–ChE conjugates. Interestingly, the N-methyl analogue projects its amino group towards the choline-binding pocket, so that aging proceeds through deamination. This orientation results from a preference of hBChE's acyl-binding pocket for larger than 2-atoms linear substituents. The correlation between the inhibitory potency and the N-monoalkyl chain length is related to increasingly optimized interactions with the acyl-binding pocket as shown by the X-ray structures. These kinetics and X-ray data lead to a structure–activity relationship that highlights steric and electronic effects of the amino substituent of phosphoramidate. This study provides the structural basis to design new oximes capable of reactivating phosphoramidyl-hBChE conjugates after intoxication, notably when hBChE is used as pretreatment, or to design BChE-based catalytic bioscavengers.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference25 articles.

1. Pesticides and susceptible populations: people with butyrylcholinesterase genetic variants may be at risk;Lockridge;Neurotoxicology,2000

2. Structure, activities and biomedical applications of human butyrylcholinesterase;Masson;Pep. Prot. Letters.,2009

3. The pathophysiology of organophosphorus pesticide self-poisoning is not so simple;Eddleston;Neth. J. Med.,2008

4. Pesticide self-poisoning: thinking outside the box;Konradsen;Lancet,2007

5. Differences in active site gorge dimensions of cholinesterases revealed by binding of inhibitors to human butyrylcholinesterase;Saxena;Biochemistry,1997

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