Structural basis of odor sensing by insect heteromeric odorant receptors.

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Bibliographic Details
Title: Structural basis of odor sensing by insect heteromeric odorant receptors.
Authors: Zhao, Jiawei, Chen, Andy Q., Ryu, Jaewook, del Mármol, Josefina
Source: Science (pre-March 2025). 6/28/2024, Vol. 384 Issue 6703, p1460-1467. 8p. 4 Diagrams.
Subjects: Olfactory receptors, Anopheles gambiae, Insects, Insect evolution, Ion channels, Mosquitoes, Aedes aegypti, Mosquito control
Abstract: Most insects, including human-targeting mosquitoes, detect odors through odorant-activated ion channel complexes consisting of a divergent odorant-binding subunit (OR) and a conserved co-receptor subunit (Orco). As a basis for understanding how odorants activate these heteromeric receptors, we report here cryo2electron microscopy structures of two different heteromeric odorant receptor complexes containing ORs from disease-vector mosquitos Aedes aegypti or Anopheles gambiae. These structures reveal an unexpected stoichiometry of one OR to three Orco subunits. Comparison of structures in odorant-bound and unbound states indicates that odorant binding to the sole OR subunit is sufficient to open the channel pore, suggesting a mechanism of OR activation and a conceptual framework for understanding evolution of insect odorant receptor sensitivity. [ABSTRACT FROM AUTHOR]
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Database: Psychology and Behavioral Sciences Collection
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Abstract:Most insects, including human-targeting mosquitoes, detect odors through odorant-activated ion channel complexes consisting of a divergent odorant-binding subunit (OR) and a conserved co-receptor subunit (Orco). As a basis for understanding how odorants activate these heteromeric receptors, we report here cryo2electron microscopy structures of two different heteromeric odorant receptor complexes containing ORs from disease-vector mosquitos Aedes aegypti or Anopheles gambiae. These structures reveal an unexpected stoichiometry of one OR to three Orco subunits. Comparison of structures in odorant-bound and unbound states indicates that odorant binding to the sole OR subunit is sufficient to open the channel pore, suggesting a mechanism of OR activation and a conceptual framework for understanding evolution of insect odorant receptor sensitivity. [ABSTRACT FROM AUTHOR]
ISSN:00368075
DOI:10.1126/science.adn6384