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Characterization of Imidazopyridine Compounds as Negative Allosteric Modulators of Proton-Sensing GPR4 in Extracellular Acidification-Induced Responses

G protein-coupled receptor 4 (GPR4), previously proposed as the receptor for sphingosylphosphorylcholine, has recently been identified as the proton-sensing G protein-coupled receptor (GPCR) coupling to multiple intracellular signaling pathways, including the G(s) protein/cAMP and G(13) protein/Rho....

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Autores principales: Tobo, Ayaka, Tobo, Masayuki, Nakakura, Takashi, Ebara, Masashi, Tomura, Hideaki, Mogi, Chihiro, Im, Dong-Soon, Murata, Naoya, Kuwabara, Atsushi, Ito, Saki, Fukuda, Hayato, Arisawa, Mitsuhiro, Shuto, Satoshi, Nakaya, Michio, Kurose, Hitoshi, Sato, Koichi, Okajima, Fumikazu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4466532/
https://www.ncbi.nlm.nih.gov/pubmed/26070068
http://dx.doi.org/10.1371/journal.pone.0129334
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author Tobo, Ayaka
Tobo, Masayuki
Nakakura, Takashi
Ebara, Masashi
Tomura, Hideaki
Mogi, Chihiro
Im, Dong-Soon
Murata, Naoya
Kuwabara, Atsushi
Ito, Saki
Fukuda, Hayato
Arisawa, Mitsuhiro
Shuto, Satoshi
Nakaya, Michio
Kurose, Hitoshi
Sato, Koichi
Okajima, Fumikazu
author_facet Tobo, Ayaka
Tobo, Masayuki
Nakakura, Takashi
Ebara, Masashi
Tomura, Hideaki
Mogi, Chihiro
Im, Dong-Soon
Murata, Naoya
Kuwabara, Atsushi
Ito, Saki
Fukuda, Hayato
Arisawa, Mitsuhiro
Shuto, Satoshi
Nakaya, Michio
Kurose, Hitoshi
Sato, Koichi
Okajima, Fumikazu
author_sort Tobo, Ayaka
collection PubMed
description G protein-coupled receptor 4 (GPR4), previously proposed as the receptor for sphingosylphosphorylcholine, has recently been identified as the proton-sensing G protein-coupled receptor (GPCR) coupling to multiple intracellular signaling pathways, including the G(s) protein/cAMP and G(13) protein/Rho. In the present study, we characterized some imidazopyridine compounds as GPR4 modulators that modify GPR4 receptor function. In the cells that express proton-sensing GPCRs, including GPR4, OGR1, TDAG8, and G2A, extracellular acidification stimulates serum responsive element (SRE)-driven transcriptional activity, which has been shown to reflect Rho activity, with different proton sensitivities. Imidazopyridine compounds inhibited the moderately acidic pH-induced SRE activity only in GPR4-expressing cells. Acidic pH-stimulated cAMP accumulation, mRNA expression of inflammatory genes, and GPR4 internalization within GPR4-expressing cells were all inhibited by the GPR4 modulator. We further compared the inhibition property of the imidazopyridine compound with psychosine, which has been shown to selectively inhibit actions induced by proton-sensing GPCRs, including GPR4. In the GPR4 mutant, in which certain histidine residues were mutated to phenylalanine, proton sensitivity was significantly shifted to the right, and psychosine failed to further inhibit acidic pH-induced SRE activation. On the other hand, the imidazopyridine compound almost completely inhibited acidic pH-induced action in mutant GPR4. We conclude that some imidazopyridine compounds show specificity to GPR4 as negative allosteric modulators with a different action mode from psychosine, an antagonist susceptible to histidine residues, and are useful for characterizing GPR4-mediated acidic pH-induced biological actions.
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spelling pubmed-44665322015-06-22 Characterization of Imidazopyridine Compounds as Negative Allosteric Modulators of Proton-Sensing GPR4 in Extracellular Acidification-Induced Responses Tobo, Ayaka Tobo, Masayuki Nakakura, Takashi Ebara, Masashi Tomura, Hideaki Mogi, Chihiro Im, Dong-Soon Murata, Naoya Kuwabara, Atsushi Ito, Saki Fukuda, Hayato Arisawa, Mitsuhiro Shuto, Satoshi Nakaya, Michio Kurose, Hitoshi Sato, Koichi Okajima, Fumikazu PLoS One Research Article G protein-coupled receptor 4 (GPR4), previously proposed as the receptor for sphingosylphosphorylcholine, has recently been identified as the proton-sensing G protein-coupled receptor (GPCR) coupling to multiple intracellular signaling pathways, including the G(s) protein/cAMP and G(13) protein/Rho. In the present study, we characterized some imidazopyridine compounds as GPR4 modulators that modify GPR4 receptor function. In the cells that express proton-sensing GPCRs, including GPR4, OGR1, TDAG8, and G2A, extracellular acidification stimulates serum responsive element (SRE)-driven transcriptional activity, which has been shown to reflect Rho activity, with different proton sensitivities. Imidazopyridine compounds inhibited the moderately acidic pH-induced SRE activity only in GPR4-expressing cells. Acidic pH-stimulated cAMP accumulation, mRNA expression of inflammatory genes, and GPR4 internalization within GPR4-expressing cells were all inhibited by the GPR4 modulator. We further compared the inhibition property of the imidazopyridine compound with psychosine, which has been shown to selectively inhibit actions induced by proton-sensing GPCRs, including GPR4. In the GPR4 mutant, in which certain histidine residues were mutated to phenylalanine, proton sensitivity was significantly shifted to the right, and psychosine failed to further inhibit acidic pH-induced SRE activation. On the other hand, the imidazopyridine compound almost completely inhibited acidic pH-induced action in mutant GPR4. We conclude that some imidazopyridine compounds show specificity to GPR4 as negative allosteric modulators with a different action mode from psychosine, an antagonist susceptible to histidine residues, and are useful for characterizing GPR4-mediated acidic pH-induced biological actions. Public Library of Science 2015-06-12 /pmc/articles/PMC4466532/ /pubmed/26070068 http://dx.doi.org/10.1371/journal.pone.0129334 Text en © 2015 Tobo et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Tobo, Ayaka
Tobo, Masayuki
Nakakura, Takashi
Ebara, Masashi
Tomura, Hideaki
Mogi, Chihiro
Im, Dong-Soon
Murata, Naoya
Kuwabara, Atsushi
Ito, Saki
Fukuda, Hayato
Arisawa, Mitsuhiro
Shuto, Satoshi
Nakaya, Michio
Kurose, Hitoshi
Sato, Koichi
Okajima, Fumikazu
Characterization of Imidazopyridine Compounds as Negative Allosteric Modulators of Proton-Sensing GPR4 in Extracellular Acidification-Induced Responses
title Characterization of Imidazopyridine Compounds as Negative Allosteric Modulators of Proton-Sensing GPR4 in Extracellular Acidification-Induced Responses
title_full Characterization of Imidazopyridine Compounds as Negative Allosteric Modulators of Proton-Sensing GPR4 in Extracellular Acidification-Induced Responses
title_fullStr Characterization of Imidazopyridine Compounds as Negative Allosteric Modulators of Proton-Sensing GPR4 in Extracellular Acidification-Induced Responses
title_full_unstemmed Characterization of Imidazopyridine Compounds as Negative Allosteric Modulators of Proton-Sensing GPR4 in Extracellular Acidification-Induced Responses
title_short Characterization of Imidazopyridine Compounds as Negative Allosteric Modulators of Proton-Sensing GPR4 in Extracellular Acidification-Induced Responses
title_sort characterization of imidazopyridine compounds as negative allosteric modulators of proton-sensing gpr4 in extracellular acidification-induced responses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4466532/
https://www.ncbi.nlm.nih.gov/pubmed/26070068
http://dx.doi.org/10.1371/journal.pone.0129334
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