Endogenous fatty acids in olfactory hairs influence pheromone binding protein structure and function in Lymantria dispar
Author:
Publisher
Elsevier BV
Subject
Molecular Biology,Biochemistry,Biophysics
Reference55 articles.
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3. Kinetic properties of a sex pheromone-degrading enzyme: the sensillar esterase of Antheraea polyphemus.
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1. Evidence for a role of SNMP2 and antennal support cells in sensillum lymph clearance processes of moth pheromone-responsive sensilla;Insect Biochemistry and Molecular Biology;2024-01
2. Design and Synthesis of Fluorophore-Tagged Disparlure Enantiomers to Study Pheromone Enantiomer Discrimination in the Pheromone-Binding Proteins from the Gypsy Moth, Lymantria dispar;Journal of Chemical Ecology;2021-10-11
3. Chemical profile from the head of Vespa velutina and V. crabro;Apidologie;2021-03-08
4. Mechanism and dynamics of insect odorant-binding proteins;Insect Pheromone Biochemistry and Molecular Biology;2021
5. Ligand- and pH-Induced Structural Transition of Gypsy Moth Lymantria dispar Pheromone-Binding Protein 1 (LdisPBP1);Biochemistry;2020-09-02
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