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The cyclic keto-enol insecticide spirotetramat inhibits insect and spider mite acetyl-CoA carboxylases by interfering with the carboxyltransferase partial reaction.

Insect Biochem Mol Biol.. 2014-10;  55C:1-8
P LÜmmen, J Khajehali, K Luther, T Van Leeuwen. BayerCropScience AG, 40789 Monheim, Germany.
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摘要

Acetyl-CoA carboxylase (ACC) catalyzes the committed and rate-limiting step in fatty acid biosynthesis. The two partial reactions, carboxylation of biotin followed by carboxyl transfer to the acceptor acetyl-CoA, are performed by two separate domains in animal ACCs. The cyclic keto-enol insecticides and acaricides have been proposed to inhibit insect ACCs. In this communication, we show that the enol derivative of the cylic keto-enol insecticide spirotetramat inhibited ACCs partially purified from the insect species Myzus persicae and Spodoptera frugiperda, as well as the spider mite (Tetranychus urticae) ACC which was expressed in insect cells using a recombinant baculovirus. Steady-state kinetic analysis reve... More

关键词

Acetyl-CoA carboxylase; Carboxyltransferase; Competitive inhibition; Insecticide; Mode of action; Mutagenesis; Spider mite; Spirotetramat-enol