Park_2024_Pestic.Biochem.Physiol_200_105834

Reference

Title : Eucalyptus globulus leaf-isolated isorhapontin serves as a natural insecticide via acetylcholinesterase inhibition - Park_2024_Pestic.Biochem.Physiol_200_105834
Author(s) : Park JY , Kang SD , Son YG , Kim JY , Lee G , Kim KD , Lee SW
Ref : Pestic Biochem Physiol , 200 :105834 , 2024
Abstract :

Acetylcholinesterase (AChE) inhibitors cause insect death by preventing the hydrolysis of the neurotransmitter acetylcholine, which overstimulates the nervous system. In this study, isorhapontin, isolated from E. globulus leaves, was evaluated as a natural insecticide with AChE inhibition at 12.5 microM. Using kinetic analyses, we found that isorhapontin acted as a competitive inhibitor that binds to the active site of AChE. The inhibition constant (K(i)) was 6.1 microM. Furthermore, isorhapontin and resveratrol, which have basic skeletons, were predicted to bind to the active site of AChE via molecular docking. A comparison of the hydrogen bonding between the two stilbenes revealed characteristic differences in their interactions with amino acids. In isorhapontin, Trp83, Gly149, Tyr162, Tyr324, and Tyr370 interacted with the sugar moiety. These results suggest that with further development, isorhapontin can be used as an insecticide alternative.

PubMedSearch : Park_2024_Pestic.Biochem.Physiol_200_105834
PubMedID: 38582576

Related information

Citations formats

Park JY, Kang SD, Son YG, Kim JY, Lee G, Kim KD, Lee SW (2024)
Eucalyptus globulus leaf-isolated isorhapontin serves as a natural insecticide via acetylcholinesterase inhibition
Pestic Biochem Physiol 200 :105834

Park JY, Kang SD, Son YG, Kim JY, Lee G, Kim KD, Lee SW (2024)
Pestic Biochem Physiol 200 :105834