Nishi_2006_Arch.Biochem.Biophys_445_115

Reference

Title : Characterization of pyrethroid hydrolysis by the human liver carboxylesterases hCE-1 and hCE-2 - Nishi_2006_Arch.Biochem.Biophys_445_115
Author(s) : Nishi K , Huang H , Kamita SG , Kim IH , Morisseau C , Hammock BD
Ref : Archives of Biochemistry & Biophysics , 445 :115 , 2006
Abstract :

Carboxylesterases hydrolyze a large array of endogenous and exogenous ester-containing compounds, including pyrethroid insecticides. Herein, we report the specific activities and kinetic parameters of human carboxylesterase (hCE)-1 and hCE-2 using authentic pyrethroids and pyrethroid-like, fluorescent surrogates. Both hCE-1 and hCE-2 hydrolyzed type I and II pyrethroids with strong stereoselectivity. For example, the trans-isomers of permethrin and cypermethrin were hydrolyzed much faster than corresponding cis-counterparts by both enzymes. Kinetic values of hCE-1 and hCE-2 were determined using cypermethrin and 11 stereoisomers of the pyrethroid-like, fluorescent surrogates. K(m) values for the authentic pyrethroids and fluorescent surrogates were in general lower than those for other ester-containing substrates of hCEs. The pyrethroid-like, fluorescent surrogates were hydrolyzed at rates similar to the authentic pyrethroids by both enzymes, suggesting the potential of these compounds as tools for high throughput screening of esterases that hydrolyze pyrethroids.

PubMedSearch : Nishi_2006_Arch.Biochem.Biophys_445_115
PubMedID: 16359636
Gene_locus related to this paper: human-CES1 , human-CES2

Related information

Inhibitor Permethrin
Substrate Cypermethrin    Permethrin
Gene_locus human-CES1    human-CES2

Citations formats

Nishi K, Huang H, Kamita SG, Kim IH, Morisseau C, Hammock BD (2006)
Characterization of pyrethroid hydrolysis by the human liver carboxylesterases hCE-1 and hCE-2
Archives of Biochemistry & Biophysics 445 :115

Nishi K, Huang H, Kamita SG, Kim IH, Morisseau C, Hammock BD (2006)
Archives of Biochemistry & Biophysics 445 :115