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Article Dans Une Revue Journal of Molecular Biology Année : 2009

Queen bee pheromone binding protein pH-induced domain swapping favors pheromone release

Résumé

In honeybee (Apis mellifera) societies, the queen controls the development and the caste status of the members of the hive. Queen bees secrete pheromonal blends comprising 10 or more major and minor components, mainly hydrophobic. The major component, 9-keto-2(E)-decenoic acid (9-ODA), acts on the workers and male bees (drones), eliciting social or sexual responses. 9-ODA is captured in the antennal lymph and transported to the pheromone receptor(s) in the sensory neuron membranes by pheromone binding proteins (PBPs). A key issue is to understand how the pheromone, once tightly bound to its PBP, is released to activate the receptor. We report here on the structure at physiological pH of the main antennal PBP, ASP1, identified in workers and male honeybees, in its apo or complexed form, particularly with the main component of the queen mandibular pheromonal mixture (9-ODA). Contrary to the ASP1 structure at low pH, the ASPI structure at pH 7.0 is a domain-swapped dimer with one or two ligands per monomer. This dimerization is disrupted by a unique residue mutation since Asp35 Asn and Asp35 Ala mutants remain monomeric at pH 7.0, as does native ASP1 at pH 4.0. Asp35 is conserved in only similar to 30% of medium-chain PBPs and is replaced by other residues, such as Asn, Ala and Ser, among others, thus excluding that they may perform domain swapping. Therefore, these different medium-chain PBPs, as well as PBPs from moths, very likely exhibit different mechanisms of ligand release or receptor recognition. (C) 2009 Elsevier Ltd. All rights reserved.

Dates et versions

hal-02668004 , version 1 (31-05-2020)

Identifiants

Citer

Marion E. Pesenti, Silvia Spinelli, Valérie Bézirard, Loïc Briand, J Claude Pernollet, et al.. Queen bee pheromone binding protein pH-induced domain swapping favors pheromone release. Journal of Molecular Biology, 2009, 390 (5), pp.981-990. ⟨10.1016/j.jmb.2009.05.067⟩. ⟨hal-02668004⟩
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