Literature DB >> 17188793

Stoichiometric and catalytic scavengers as protection against nerve agent toxicity: a mini review.

David E Lenz1, David Yeung, J Richard Smith, Richard E Sweeney, Lucille A Lumley, Douglas M Cerasoli.   

Abstract

Currently fielded treatments for nerve agent intoxication promote survival, but do not afford complete protection against either nerve agent-induced motor and cognitive deficits or neuronal pathology. The use of human plasma-derived butyrylcholinesterase (HuBuChE) to neutralize the toxic effects of nerve agents in vivo has been shown to both aid survival and protect against decreased cognitive function after nerve agent exposure. Recently, a commercially produced recombinant form of human butyrylcholinesterase (r-HuBuChE; PharmAthene Inc.) expressed in the milk of transgenic goats has become available. This material is biochemically similar to plasma-derived HuBuChE in in vitro assays. The pharmacokinetic characteristics of a polyethylene glycol coated (pegylated) form of r-HuBuChE were determined in guinea pigs; the enzyme was rapidly bioavailable with a half-life (t(1/2)) and pharmacokinetic profile that resembled that of plasma-derived huBuChE. Guinea pigs were injected with 140mg/kg (i.m.) of pegylated r-HuBuChE 18h prior to exposure (sc) to 5.5xLD(50) VX or soman. VX and soman were administered in a series of three injections of 1.5xLD(50), 2.0xLD(50), and 2.0xLD(50), respectively, with injections separated by 2h. Pretreatment with pegylated r-HuBuChE provided 100% survival against multiple lethal doses of VX and soman. Guinea pigs displayed no signs of nerve agent toxicity following exposure. Assessments of motor activity, coordination, and acquisition of spatial memory were performed for 2 weeks following nerve agent exposure. There were no measurable decreases in motor or cognitive function during this period. In contrast, animals receiving 1.5xLD(50) challenges of soman or VX and treated with standard atropine, 2-PAM, and diazepam therapy showed 50 and 100% survival, respectively, but exhibited marked decrements in motor function and, in the case of GD, impaired spatial memory acquisition. The advances in this field have resulted in the decision to select both the plasma-derived and the recombinant form of BuChE for advanced development and transition to clinical trials. Efforts have now been expanded to identify a catalytic protein capable of not only binding, but also rapidly hydrolyzing the standard threat nerve agents. Recent work has focused on paraoxonase-1 (PON1), a naturally occurring human serum enzyme with the capacity to catalyze the hydrolysis of nerve agents, albeit too slowly to afford dramatic protection. Using rational design, several amino acids involved in substrate binding have been identified and site-directed mutations have revealed that residue H115 plays an important role in binding. In addition, the stereospecificity of PON1 for the catalytic hydrolysis of soman has been examined. The enzyme exhibits a slight stereospecificity for the C+P+ isomer of soman, which is due more to preferential binding than to selective hydrolysis of this isomer. The results suggest that it may be possible to engineer a mutant form of PON1 with enhanced activity and stereospecificity for the most toxic nerve agent isoforms.

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Year:  2006        PMID: 17188793     DOI: 10.1016/j.tox.2006.11.066

Source DB:  PubMed          Journal:  Toxicology        ISSN: 0300-483X            Impact factor:   4.221


  47 in total

1.  Plant-derived human butyrylcholinesterase, but not an organophosphorous-compound hydrolyzing variant thereof, protects rodents against nerve agents.

Authors:  Brian C Geyer; Latha Kannan; Pierre-Emmanuel Garnaud; Clarence A Broomfield; C Linn Cadieux; Irene Cherni; Sean M Hodgins; Shane A Kasten; Karli Kelley; Jacquelyn Kilbourne; Zeke P Oliver; Tamara C Otto; Ian Puffenberger; Tony E Reeves; Neil Robbins; Ryan R Woods; Hermona Soreq; David E Lenz; Douglas M Cerasoli; Tsafrir S Mor
Journal:  Proc Natl Acad Sci U S A       Date:  2010-11-08       Impact factor: 11.205

2.  Catalytic Soman Scavenging by the Y337A/F338A Acetylcholinesterase Mutant Assisted with Novel Site-Directed Aldoximes.

Authors:  Zrinka Kovarik; Nikolina Maček Hrvat; Maja Katalinić; Rakesh K Sit; Alexander Paradyse; Suzana Žunec; Kamil Musilek; Valery V Fokin; Palmer Taylor; Zoran Radić
Journal:  Chem Res Toxicol       Date:  2015-04-16       Impact factor: 3.739

Review 3.  Human PON1, a biomarker of risk of disease and exposure.

Authors:  C E Furlong; S M Suzuki; R C Stevens; J Marsillach; R J Richter; G P Jarvik; H Checkoway; A Samii; L G Costa; A Griffith; J W Roberts; D Yearout; C P Zabetian
Journal:  Chem Biol Interact       Date:  2010-03-23       Impact factor: 5.192

4.  Characterization of human paraoxonase 1 variants suggest that His residues at 115 and 134 positions are not always needed for the lactonase/arylesterase activities of the enzyme.

Authors:  Priyanka Bajaj; Rajan K Tripathy; Geetika Aggarwal; Abhay H Pande
Journal:  Protein Sci       Date:  2013-10-26       Impact factor: 6.725

5.  In vitro evaluation of the catalytic activity of paraoxonases and phosphotriesterases predicts the enzyme circulatory levels required for in vivo protection against organophosphate intoxications.

Authors:  Yacov Ashani; Haim Leader; Nidhi Aggarwal; Israel Silman; Franz Worek; Joel L Sussman; Moshe Goldsmith
Journal:  Chem Biol Interact       Date:  2016-05-06       Impact factor: 5.192

Review 6.  Organophosphorus pesticide determination in biological specimens: bioanalytical and toxicological aspects.

Authors:  Sofia Soares; Tiago Rosado; Mário Barroso; Duarte Nuno Vieira; Eugenia Gallardo
Journal:  Int J Legal Med       Date:  2019-07-12       Impact factor: 2.686

7.  HI-6 assisted catalytic scavenging of VX by acetylcholinesterase choline binding site mutants.

Authors:  Nikolina Maček Hrvat; Suzana Žunec; Palmer Taylor; Zoran Radić; Zrinka Kovarik
Journal:  Chem Biol Interact       Date:  2016-04-12       Impact factor: 5.192

8.  Human carboxylesterase 1 stereoselectively binds the nerve agent cyclosarin and spontaneously hydrolyzes the nerve agent sarin.

Authors:  Andrew C Hemmert; Tamara C Otto; Monika Wierdl; Carol C Edwards; Christopher D Fleming; Mary MacDonald; John R Cashman; Philip M Potter; Douglas M Cerasoli; Matthew R Redinbo
Journal:  Mol Pharmacol       Date:  2010-01-05       Impact factor: 4.436

9.  In Silico Design and Evaluation of Carboxylesterase Inhibitors.

Authors:  Shana V Stoddard; Xiaozhen Yu; Philip M Potter; Randy M Wadkins
Journal:  J Pest Sci (2004)       Date:  2010       Impact factor: 5.918

10.  Chemical synthesis of two series of nerve agent model compounds and their stereoselective interaction with human acetylcholinesterase and human butyrylcholinesterase.

Authors:  Nora H Barakat; Xueying Zheng; Cynthia B Gilley; Mary MacDonald; Karl Okolotowicz; John R Cashman; Shubham Vyas; Jeremy M Beck; Christopher M Hadad; Jun Zhang
Journal:  Chem Res Toxicol       Date:  2009-10       Impact factor: 3.739

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