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Identification and pharmacological characterization of the prostaglandin FP receptor and FP receptor variant complexes

Background and purpose: A prostamide analogue, bimatoprost, has been shown to be effective in reducing intraocular pressure, but its precise mechanism of action remains unclear. Hence, to elucidate the molecular mechanisms of this effect of bimatoprost, we focused on pharmacologically characterizing...

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Autores principales: Liang, Y, Woodward, D F, Guzman, V M, Li, C, Scott, D F, Wang, J W, Wheeler, L A, Garst, M E, Landsverk, K, Sachs, G, Krauss, A H-P, Cornell, C, Martos, J, Pettit, S, Fliri, H
Formato: Texto
Lenguaje:English
Publicado: Nature Publishing Group 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2440084/
https://www.ncbi.nlm.nih.gov/pubmed/18587449
http://dx.doi.org/10.1038/bjp.2008.142
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author Liang, Y
Woodward, D F
Guzman, V M
Li, C
Scott, D F
Wang, J W
Wheeler, L A
Garst, M E
Landsverk, K
Sachs, G
Krauss, A H-P
Cornell, C
Martos, J
Pettit, S
Fliri, H
author_facet Liang, Y
Woodward, D F
Guzman, V M
Li, C
Scott, D F
Wang, J W
Wheeler, L A
Garst, M E
Landsverk, K
Sachs, G
Krauss, A H-P
Cornell, C
Martos, J
Pettit, S
Fliri, H
author_sort Liang, Y
collection PubMed
description Background and purpose: A prostamide analogue, bimatoprost, has been shown to be effective in reducing intraocular pressure, but its precise mechanism of action remains unclear. Hence, to elucidate the molecular mechanisms of this effect of bimatoprost, we focused on pharmacologically characterizing prostaglandin FP receptor (FP) and FP receptor variant (altFP) complexes. Experimental approach: FP receptor mRNA variants were identified by reverse transcription-polymerase chain reaction. The FP-altFP4 heterodimers were established in HEK293/EBNA cells co-expressing FP and altFP4 receptor variants. A fluorometric imaging plate reader was used to study Ca(2+) mobilization. Upregulation of cysteine-rich angiogenic protein 61 (Cyr61) mRNA was measured by Northern blot analysis, and phosphorylation of myosin light chain (MLC) by western analysis. Key results: Six splicing variants of FP receptor mRNA were identified in human ocular tissues. Immunoprecipitation confirmed that the FP receptor is dimerized with altFP4 receptors in HEK293/EBNA cells co-expressing FP and altFP4 receptors. In the studies of the kinetic profile for Ca(2+) mobilization, prostaglandin F(2α) (PGF(2α)) elicited a rapid increase in intracellular Ca(2+) followed by a steady state phase. In contrast, bimatoprost elicited an immediate increase in intracellular Ca(2+) followed by a second phase. The prostamide antagonist, AGN211335, selectively and dose-dependently inhibited the bimatoprost-initiated second phase of Ca(2+) mobilization, Cyr61 mRNA upregulation and MLC phosphorylation, but did not block the action of PGF(2α). Conclusion and implications: Bimatoprost lacks effects on the FP receptor but may interact with the FP-altFP receptor heterodimer to induce alterations in second messenger signalling. Hence, FP-altFP complexes may represent the underlying basis of bimatoprost pharmacology.
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spelling pubmed-24400842008-06-27 Identification and pharmacological characterization of the prostaglandin FP receptor and FP receptor variant complexes Liang, Y Woodward, D F Guzman, V M Li, C Scott, D F Wang, J W Wheeler, L A Garst, M E Landsverk, K Sachs, G Krauss, A H-P Cornell, C Martos, J Pettit, S Fliri, H Br J Pharmacol Research Papers Background and purpose: A prostamide analogue, bimatoprost, has been shown to be effective in reducing intraocular pressure, but its precise mechanism of action remains unclear. Hence, to elucidate the molecular mechanisms of this effect of bimatoprost, we focused on pharmacologically characterizing prostaglandin FP receptor (FP) and FP receptor variant (altFP) complexes. Experimental approach: FP receptor mRNA variants were identified by reverse transcription-polymerase chain reaction. The FP-altFP4 heterodimers were established in HEK293/EBNA cells co-expressing FP and altFP4 receptor variants. A fluorometric imaging plate reader was used to study Ca(2+) mobilization. Upregulation of cysteine-rich angiogenic protein 61 (Cyr61) mRNA was measured by Northern blot analysis, and phosphorylation of myosin light chain (MLC) by western analysis. Key results: Six splicing variants of FP receptor mRNA were identified in human ocular tissues. Immunoprecipitation confirmed that the FP receptor is dimerized with altFP4 receptors in HEK293/EBNA cells co-expressing FP and altFP4 receptors. In the studies of the kinetic profile for Ca(2+) mobilization, prostaglandin F(2α) (PGF(2α)) elicited a rapid increase in intracellular Ca(2+) followed by a steady state phase. In contrast, bimatoprost elicited an immediate increase in intracellular Ca(2+) followed by a second phase. The prostamide antagonist, AGN211335, selectively and dose-dependently inhibited the bimatoprost-initiated second phase of Ca(2+) mobilization, Cyr61 mRNA upregulation and MLC phosphorylation, but did not block the action of PGF(2α). Conclusion and implications: Bimatoprost lacks effects on the FP receptor but may interact with the FP-altFP receptor heterodimer to induce alterations in second messenger signalling. Hence, FP-altFP complexes may represent the underlying basis of bimatoprost pharmacology. Nature Publishing Group 2008-04-21 2008-07 /pmc/articles/PMC2440084/ /pubmed/18587449 http://dx.doi.org/10.1038/bjp.2008.142 Text en Copyright 2008, Nature Publishing Group http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivs 3.0 License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/.
spellingShingle Research Papers
Liang, Y
Woodward, D F
Guzman, V M
Li, C
Scott, D F
Wang, J W
Wheeler, L A
Garst, M E
Landsverk, K
Sachs, G
Krauss, A H-P
Cornell, C
Martos, J
Pettit, S
Fliri, H
Identification and pharmacological characterization of the prostaglandin FP receptor and FP receptor variant complexes
title Identification and pharmacological characterization of the prostaglandin FP receptor and FP receptor variant complexes
title_full Identification and pharmacological characterization of the prostaglandin FP receptor and FP receptor variant complexes
title_fullStr Identification and pharmacological characterization of the prostaglandin FP receptor and FP receptor variant complexes
title_full_unstemmed Identification and pharmacological characterization of the prostaglandin FP receptor and FP receptor variant complexes
title_short Identification and pharmacological characterization of the prostaglandin FP receptor and FP receptor variant complexes
title_sort identification and pharmacological characterization of the prostaglandin fp receptor and fp receptor variant complexes
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2440084/
https://www.ncbi.nlm.nih.gov/pubmed/18587449
http://dx.doi.org/10.1038/bjp.2008.142
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