4.5 Article

Catalytic detoxification of nerve agent and pesticide organophosphates by butyrylcholinesterase assisted with non-pyridinium oximes

期刊

BIOCHEMICAL JOURNAL
卷 450, 期 -, 页码 231-242

出版社

PORTLAND PRESS LTD
DOI: 10.1042/BJ20121612

关键词

butyrylcholinesterase reactivation; catalytic organophosphate bioscavenger; edrophonium analogue; nonpyridinium oxime reactivator; organophosphate intoxication; oxime reactivation

资金

  1. CounterACT Program
  2. National Institutes of Health Office of the Director
  3. National Institute of Neurological Disorders and Stroke [U01 NS058046, R21NS072086]

向作者/读者索取更多资源

In the present paper we show a comprehensive in vitro, ex vivo and in vivo study on hydrolytic detoxification of nerve agent and pesticide OPs (organophosphates) catalysed by purified hBChE (human butyrylcholinesterase) in combination with novel non-pyridinium oxime reactivators. We identified TAB2OH (2-trimethylammonio-6-hydroxybenzaldehyde oxime) as an efficient reactivator of OP-hBChE conjugates formed by the nerve agents VX and cyclosarin, and the pesticide paraoxon. It was also functional in reactivation of sarin- and tabun-inhibited hBChE. A 3-5-fold enhancement of in vitro reactivation of VX-, cyclosarin- and paraoxon-inhibited hBChE was observed when compared with the commonly used N-methylpyridinium aldoxime reactivator, 2PAM (2-pyridinealdoxime methiodide). Kinetic analysis showed that the enhancement resulted from improved molecular recognition of corresponding OP-hBChE conjugates by TAB2OH. The unique features of TAB2OH stem from an exocyclic quaternary nitrogen and a hydroxy group, both ortho to an oxime group on a benzene ring. pH-dependences reveal participation of the hydroxy group (pK(a) = 7.6) forming an additional ionizing nucleophile to potentiate the oxime (pK(a) = 10) at physiological pH. The TAB2OH protective indices in therapy of sari- and paraoxon-exposed mice were enhanced by 30-60 % when they were treated with a combination of TAB2OH and sub-stoichiometric hBChE. The results of the present study establish that oxime-assisted catalysis is feasible for OP bioscavenging.

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