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Discovery of New Classes of Compounds that Reactivate Acetylcholinesterase Inhibited by Organophosphates.


ABSTRACT: Acetylcholinesterase (AChE) that has been covalently inhibited by organophosphate compounds (OPCs), such as nerve agents and pesticides, has traditionally been reactivated by using nucleophilic oximes. There is, however, a clearly recognized need for new classes of compounds with the ability to reactivate inhibited AChE with improved in vivo efficacy. Here we describe our discovery of new functional groups--Mannich phenols and general bases--that are capable of reactivating OPC--inhibited AChE more efficiently than standard oximes and we describe the cooperative mechanism by which these functionalities are delivered to the active site. These discoveries, supported by preliminary in vivo results and crystallographic data, significantly broaden the available approaches for reactivation of AChE.

SUBMITTER: Katz FS 

PROVIDER: S-EPMC4664178 | biostudies-literature | 2015 Oct

REPOSITORIES: biostudies-literature

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Discovery of New Classes of Compounds that Reactivate Acetylcholinesterase Inhibited by Organophosphates.

Katz Francine S FS   Pecic Stevan S   Tran Timothy H TH   Trakht Ilya I   Schneider Laura L   Zhu Zhengxiang Z   Ton-That Long L   Luzac Michal M   Zlatanic Viktor V   Damera Shivani S   Macdonald Joanne J   Landry Donald W DW   Tong Liang L   Stojanovic Milan N MN  

Chembiochem : a European journal of chemical biology 20150909 15


Acetylcholinesterase (AChE) that has been covalently inhibited by organophosphate compounds (OPCs), such as nerve agents and pesticides, has traditionally been reactivated by using nucleophilic oximes. There is, however, a clearly recognized need for new classes of compounds with the ability to reactivate inhibited AChE with improved in vivo efficacy. Here we describe our discovery of new functional groups--Mannich phenols and general bases--that are capable of reactivating OPC--inhibited AChE m  ...[more]

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