Lee_2007_Biochem.Biophys.Res.Commun_353_591

Reference

Title : Mutations of acetylcholinesterase1 contribute to prothiofos-resistance in Plutella xylostella (L.) - Lee_2007_Biochem.Biophys.Res.Commun_353_591
Author(s) : Lee DW , Choi JY , Kim WT , Je YH , Song JT , Chung BK , Boo KS , Koh YH
Ref : Biochemical & Biophysical Research Communications , 353 :591 , 2007
Abstract :

Insensitive acetylcholinesterase (AChE) is involved in the resistance of organophosphorous and carbamate insecticides. We cloned a novel full-length AChE cDNA encoding ace1 gene from adult heads of the diamondback moth (DBM, Plutella xylostella). The ace1 gene encoding 679 amino acids has conserved motifs including catalytic triad, choline-binding site and acyl pocket. Northern blot analysis revealed that the ace1 gene was expressed much higher than the ace2 in all examined body parts. The biochemical properties of expressed AChEs showed substrate specificity for acetylthiocholine iodide and inhibitor specificity for BW284C51 and eserine. Three mutations of AChE1 (D229G, A298S, and G324A) were identified in the prothiofos-resistant strain, two of which (A298S and G324A) were expected to be involved in the prothiofos-resistance through three-dimensional modeling. In vitro functional expression of AChEs in Sf9 cells revealed that only resistant AChE1 is less inhibited with paraoxon, suggesting that resistant AChE1 is responsible for prothiofos-resistance.

PubMedSearch : Lee_2007_Biochem.Biophys.Res.Commun_353_591
PubMedID: 17196934
Gene_locus related to this paper: pluxy-ACHE , pluxy-ACHE1

Related information

Mutation D131G_pluxy-ACHE1    G227A_pluxy-ACHE1    A201S_pluxy-ACHE1
Inhibitor Prothiofos
Gene_locus pluxy-ACHE    pluxy-ACHE1

Citations formats

Lee DW, Choi JY, Kim WT, Je YH, Song JT, Chung BK, Boo KS, Koh YH (2007)
Mutations of acetylcholinesterase1 contribute to prothiofos-resistance in Plutella xylostella (L.)
Biochemical & Biophysical Research Communications 353 :591

Lee DW, Choi JY, Kim WT, Je YH, Song JT, Chung BK, Boo KS, Koh YH (2007)
Biochemical & Biophysical Research Communications 353 :591