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Photomodulation of G Protein-Coupled Adenosine Receptors by a Novel Light-Switchable Ligand

[Image: see text] The adenosinergic system operates through G protein-coupled adenosine receptors, which have become promising therapeutic targets for a wide range of pathological conditions. However, the ubiquity of adenosine receptors and the eventual lack of selectivity of adenosine-based drugs h...

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Autores principales: Bahamonde, María Isabel, Taura, Jaume, Paoletta, Silvia, Gakh, Andrei A., Chakraborty, Saibal, Hernando, Jordi, Fernández-Dueñas, Víctor, Jacobson, Kenneth A., Gorostiza, Pau, Ciruela, Francisco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4198106/
https://www.ncbi.nlm.nih.gov/pubmed/25248077
http://dx.doi.org/10.1021/bc5003373
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author Bahamonde, María Isabel
Taura, Jaume
Paoletta, Silvia
Gakh, Andrei A.
Chakraborty, Saibal
Hernando, Jordi
Fernández-Dueñas, Víctor
Jacobson, Kenneth A.
Gorostiza, Pau
Ciruela, Francisco
author_facet Bahamonde, María Isabel
Taura, Jaume
Paoletta, Silvia
Gakh, Andrei A.
Chakraborty, Saibal
Hernando, Jordi
Fernández-Dueñas, Víctor
Jacobson, Kenneth A.
Gorostiza, Pau
Ciruela, Francisco
author_sort Bahamonde, María Isabel
collection PubMed
description [Image: see text] The adenosinergic system operates through G protein-coupled adenosine receptors, which have become promising therapeutic targets for a wide range of pathological conditions. However, the ubiquity of adenosine receptors and the eventual lack of selectivity of adenosine-based drugs have frequently diminished their therapeutic potential. Accordingly, here we aimed to develop a new generation of light-switchable adenosine receptor ligands that change their intrinsic activity upon irradiation, thus allowing the spatiotemporal control of receptor functioning (i.e., receptor activation/inactivation dependent on location and timing). Therefore, we synthesized an orthosteric, photoisomerizable, and nonselective adenosine receptor agonist, nucleoside derivative MRS5543 containing an aryl diazo linkage on the N(6) substituent, which in the dark (relaxed isomer) behaved as a full adenosine A(3) receptor (A(3)R) and partial adenosine A(2A) receptor (A(2A)R) agonist. Conversely, upon photoisomerization with blue light (460 nm), it remained a full A(3)R agonist but became an A(2A)R antagonist. Interestingly, molecular modeling suggested that structural differences encountered within the third extracellular loop of each receptor could modulate the intrinsic, receptor subtype-dependent, activity. Overall, the development of adenosine receptor ligands with photoswitchable activity expands the pharmacological toolbox in support of research and possibly opens new pharmacotherapeutic opportunities.
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spelling pubmed-41981062015-09-23 Photomodulation of G Protein-Coupled Adenosine Receptors by a Novel Light-Switchable Ligand Bahamonde, María Isabel Taura, Jaume Paoletta, Silvia Gakh, Andrei A. Chakraborty, Saibal Hernando, Jordi Fernández-Dueñas, Víctor Jacobson, Kenneth A. Gorostiza, Pau Ciruela, Francisco Bioconjug Chem [Image: see text] The adenosinergic system operates through G protein-coupled adenosine receptors, which have become promising therapeutic targets for a wide range of pathological conditions. However, the ubiquity of adenosine receptors and the eventual lack of selectivity of adenosine-based drugs have frequently diminished their therapeutic potential. Accordingly, here we aimed to develop a new generation of light-switchable adenosine receptor ligands that change their intrinsic activity upon irradiation, thus allowing the spatiotemporal control of receptor functioning (i.e., receptor activation/inactivation dependent on location and timing). Therefore, we synthesized an orthosteric, photoisomerizable, and nonselective adenosine receptor agonist, nucleoside derivative MRS5543 containing an aryl diazo linkage on the N(6) substituent, which in the dark (relaxed isomer) behaved as a full adenosine A(3) receptor (A(3)R) and partial adenosine A(2A) receptor (A(2A)R) agonist. Conversely, upon photoisomerization with blue light (460 nm), it remained a full A(3)R agonist but became an A(2A)R antagonist. Interestingly, molecular modeling suggested that structural differences encountered within the third extracellular loop of each receptor could modulate the intrinsic, receptor subtype-dependent, activity. Overall, the development of adenosine receptor ligands with photoswitchable activity expands the pharmacological toolbox in support of research and possibly opens new pharmacotherapeutic opportunities. American Chemical Society 2014-09-23 2014-10-15 /pmc/articles/PMC4198106/ /pubmed/25248077 http://dx.doi.org/10.1021/bc5003373 Text en Copyright © 2014 American Chemical Society
spellingShingle Bahamonde, María Isabel
Taura, Jaume
Paoletta, Silvia
Gakh, Andrei A.
Chakraborty, Saibal
Hernando, Jordi
Fernández-Dueñas, Víctor
Jacobson, Kenneth A.
Gorostiza, Pau
Ciruela, Francisco
Photomodulation of G Protein-Coupled Adenosine Receptors by a Novel Light-Switchable Ligand
title Photomodulation of G Protein-Coupled Adenosine Receptors by a Novel Light-Switchable Ligand
title_full Photomodulation of G Protein-Coupled Adenosine Receptors by a Novel Light-Switchable Ligand
title_fullStr Photomodulation of G Protein-Coupled Adenosine Receptors by a Novel Light-Switchable Ligand
title_full_unstemmed Photomodulation of G Protein-Coupled Adenosine Receptors by a Novel Light-Switchable Ligand
title_short Photomodulation of G Protein-Coupled Adenosine Receptors by a Novel Light-Switchable Ligand
title_sort photomodulation of g protein-coupled adenosine receptors by a novel light-switchable ligand
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4198106/
https://www.ncbi.nlm.nih.gov/pubmed/25248077
http://dx.doi.org/10.1021/bc5003373
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