4.7 Article

Reactivation of tabun-hAChE investigated by structurally analogous oximes and mutagenesis

Journal

TOXICOLOGY
Volume 265, Issue 3, Pages 108-114

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.tox.2009.09.002

Keywords

Acetylcholinesterase; Reactivation kinetics; Tabun; K027; HI-6; HLo-7; Mutagenesis

Funding

  1. Swedish Armed Forces Research and Technology Program
  2. German Ministry of Defence

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The nerve agent tabun inhibits the essential enzyme acetylcholinesterase (AChE) by a rapid phosphoramidation of the catalytic serine residue. Oximes, such as K027 and HLo-7, can reactivate tabun-inhibited human ACH (tabun-hAChE) whereas the activity of their close structural analogue HI-6 is notably low. To investigate HI-6, K027 and HLo-7, residues lining the active-site gorge of hAChE were substituted and the effects on kinetic parameters for reactivation were determined. None of the mutants (Asp74Asn, Asp74Glu, Tyr124Phe, Tyr337Ala, Tyr337Phe, Phe338Val and Tyr341Ala) were able to facilitate HI-6-mediated reactivation of tabun-hAChE. In contrast, Tyr124Phe and Tyr337Phe induce a 2-2.5-fold enhancement of the bimolecular rate constant for K027 and HLo-7. The largest effects on the dissociation constant (3.5-fold increase) and rate constant (20-fold decrease) were observed for Tyr341Ala and Asp74Asn, respectively. These findings demonstrate the importance of residues located distant from the conjugate during the reactivation of tabun-hAChE. (C) 2009 Published by Elsevier Ireland Ltd.

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