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An ionic lock and a hydrophobic zipper mediate the coupling between an insect pheromone receptor BmOR3 and downstream effectors

Pheromone receptors (PRs) recognize specific pheromone compounds to guide the behavioral outputs of insects, which are the most diverse group of animals on earth. The activation of PRs is known to couple to the calcium permeability of their coreceptor (Orco) or putatively with G proteins; however, t...

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Autores principales: Lin, Jing-Yu, Yang, Zhao, Yang, Chan, Du, Ji-Xiang, Yang, Fan, Cheng, Jie, Pan, Wei, Zhang, Shi-Jie, Yan, Xu, Wang, Jia, Wang, Jin, Tie, Lu, Yu, Xiao, Chen, Xin, Sun, Jin-Peng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8477192/
https://www.ncbi.nlm.nih.gov/pubmed/34480896
http://dx.doi.org/10.1016/j.jbc.2021.101160
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author Lin, Jing-Yu
Yang, Zhao
Yang, Chan
Du, Ji-Xiang
Yang, Fan
Cheng, Jie
Pan, Wei
Zhang, Shi-Jie
Yan, Xu
Wang, Jia
Wang, Jin
Tie, Lu
Yu, Xiao
Chen, Xin
Sun, Jin-Peng
author_facet Lin, Jing-Yu
Yang, Zhao
Yang, Chan
Du, Ji-Xiang
Yang, Fan
Cheng, Jie
Pan, Wei
Zhang, Shi-Jie
Yan, Xu
Wang, Jia
Wang, Jin
Tie, Lu
Yu, Xiao
Chen, Xin
Sun, Jin-Peng
author_sort Lin, Jing-Yu
collection PubMed
description Pheromone receptors (PRs) recognize specific pheromone compounds to guide the behavioral outputs of insects, which are the most diverse group of animals on earth. The activation of PRs is known to couple to the calcium permeability of their coreceptor (Orco) or putatively with G proteins; however, the underlying mechanisms of this process are not yet fully understood. Moreover, whether this transverse seven transmembrane domain (7TM)-containing receptor is able to couple to arrestin, a common effector for many conventional 7TM receptors, is unknown. Herein, using the PR BmOR3 from the silk moth Bombyx mori and its coreceptor BmOrco as a template, we revealed that an agonist-induced conformational change of BmOR3 was transmitted to BmOrco through transmembrane segment 7 from both receptors, resulting in the activation of BmOrco. Key interactions, including an ionic lock and a hydrophobic zipper, are essential in mediating the functional coupling between BmOR3 and BmOrco. BmOR3 also selectively coupled with Gi proteins, which was dispensable for BmOrco coupling. Moreover, we demonstrated that trans-7TM BmOR3 recruited arrestin in an agonist-dependent manner, which indicates an important role for BmOR3–BmOrco complex formation in ionotropic functions. Collectively, our study identified the coupling of G protein and arrestin to a prototype trans-7TM PR, BmOR3, and provided important mechanistic insights into the coupling of active PRs to their downstream effectors, including coreceptors, G proteins, and arrestin.
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spelling pubmed-84771922021-10-01 An ionic lock and a hydrophobic zipper mediate the coupling between an insect pheromone receptor BmOR3 and downstream effectors Lin, Jing-Yu Yang, Zhao Yang, Chan Du, Ji-Xiang Yang, Fan Cheng, Jie Pan, Wei Zhang, Shi-Jie Yan, Xu Wang, Jia Wang, Jin Tie, Lu Yu, Xiao Chen, Xin Sun, Jin-Peng J Biol Chem Research Article Pheromone receptors (PRs) recognize specific pheromone compounds to guide the behavioral outputs of insects, which are the most diverse group of animals on earth. The activation of PRs is known to couple to the calcium permeability of their coreceptor (Orco) or putatively with G proteins; however, the underlying mechanisms of this process are not yet fully understood. Moreover, whether this transverse seven transmembrane domain (7TM)-containing receptor is able to couple to arrestin, a common effector for many conventional 7TM receptors, is unknown. Herein, using the PR BmOR3 from the silk moth Bombyx mori and its coreceptor BmOrco as a template, we revealed that an agonist-induced conformational change of BmOR3 was transmitted to BmOrco through transmembrane segment 7 from both receptors, resulting in the activation of BmOrco. Key interactions, including an ionic lock and a hydrophobic zipper, are essential in mediating the functional coupling between BmOR3 and BmOrco. BmOR3 also selectively coupled with Gi proteins, which was dispensable for BmOrco coupling. Moreover, we demonstrated that trans-7TM BmOR3 recruited arrestin in an agonist-dependent manner, which indicates an important role for BmOR3–BmOrco complex formation in ionotropic functions. Collectively, our study identified the coupling of G protein and arrestin to a prototype trans-7TM PR, BmOR3, and provided important mechanistic insights into the coupling of active PRs to their downstream effectors, including coreceptors, G proteins, and arrestin. American Society for Biochemistry and Molecular Biology 2021-09-02 /pmc/articles/PMC8477192/ /pubmed/34480896 http://dx.doi.org/10.1016/j.jbc.2021.101160 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Lin, Jing-Yu
Yang, Zhao
Yang, Chan
Du, Ji-Xiang
Yang, Fan
Cheng, Jie
Pan, Wei
Zhang, Shi-Jie
Yan, Xu
Wang, Jia
Wang, Jin
Tie, Lu
Yu, Xiao
Chen, Xin
Sun, Jin-Peng
An ionic lock and a hydrophobic zipper mediate the coupling between an insect pheromone receptor BmOR3 and downstream effectors
title An ionic lock and a hydrophobic zipper mediate the coupling between an insect pheromone receptor BmOR3 and downstream effectors
title_full An ionic lock and a hydrophobic zipper mediate the coupling between an insect pheromone receptor BmOR3 and downstream effectors
title_fullStr An ionic lock and a hydrophobic zipper mediate the coupling between an insect pheromone receptor BmOR3 and downstream effectors
title_full_unstemmed An ionic lock and a hydrophobic zipper mediate the coupling between an insect pheromone receptor BmOR3 and downstream effectors
title_short An ionic lock and a hydrophobic zipper mediate the coupling between an insect pheromone receptor BmOR3 and downstream effectors
title_sort ionic lock and a hydrophobic zipper mediate the coupling between an insect pheromone receptor bmor3 and downstream effectors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8477192/
https://www.ncbi.nlm.nih.gov/pubmed/34480896
http://dx.doi.org/10.1016/j.jbc.2021.101160
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