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Insulin signaling inhibits the 5-HT(2C )receptor in choroid plexus via MAP kinase

BACKGROUND: G protein-coupled receptors (GPCRs) interact with heterotrimeric GTP-binding proteins (G proteins) to modulate acute changes in intracellular messenger levels and ion channel activity. In contrast, long-term changes in cellular growth, proliferation and differentiation are often mediated...

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Autores principales: Hurley, Joyce H, Zhang, Shengwen, Bye, Leighan S, Marshall, Mark S, DePaoli-Roach, Anna A, Guan, Kunliang, Fox, Aaron P, Yu, Lei
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2003
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC165579/
https://www.ncbi.nlm.nih.gov/pubmed/12795815
http://dx.doi.org/10.1186/1471-2202-4-10
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author Hurley, Joyce H
Zhang, Shengwen
Bye, Leighan S
Marshall, Mark S
DePaoli-Roach, Anna A
Guan, Kunliang
Fox, Aaron P
Yu, Lei
author_facet Hurley, Joyce H
Zhang, Shengwen
Bye, Leighan S
Marshall, Mark S
DePaoli-Roach, Anna A
Guan, Kunliang
Fox, Aaron P
Yu, Lei
author_sort Hurley, Joyce H
collection PubMed
description BACKGROUND: G protein-coupled receptors (GPCRs) interact with heterotrimeric GTP-binding proteins (G proteins) to modulate acute changes in intracellular messenger levels and ion channel activity. In contrast, long-term changes in cellular growth, proliferation and differentiation are often mediated by tyrosine kinase receptors and certain GPCRs by activation of mitogen-activated protein (MAP) kinases. Complex interactions occur between these signaling pathways, but the specific mechanisms of such regulatory events are not well-understood. In particular it is not clear whether GPCRs are modulated by tyrosine kinase receptor-MAP kinase pathways. RESULTS: Here we describe tyrosine kinase receptor regulation of a GPCR via MAP kinase. Insulin reduced the activity of the 5-HT(2C )receptor in choroid plexus cells which was blocked by the MAP kinase kinase (MEK) inhibitor, PD 098059. We demonstrate that the inhibitory effect of insulin and insulin-like growth factor type 1 (IGF-1) on the 5-HT(2C )receptor is dependent on tyrosine kinase, RAS and MAP kinase. The effect may be receptor-specific: insulin had no effect on another GPCR that shares the same G protein signaling pathway as the 5-HT(2C )receptor. This effect is also direct: activated MAP kinase mimicked the effect of insulin, and removing a putative MAP kinase site from the 5-HT(2C )receptor abolished the effect of insulin. CONCLUSION: These results show that insulin signaling can inhibit 5-HT(2C )receptor activity and suggest that MAP kinase may play a direct role in regulating the function of a specific GPCR.
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spelling pubmed-1655792003-07-16 Insulin signaling inhibits the 5-HT(2C )receptor in choroid plexus via MAP kinase Hurley, Joyce H Zhang, Shengwen Bye, Leighan S Marshall, Mark S DePaoli-Roach, Anna A Guan, Kunliang Fox, Aaron P Yu, Lei BMC Neurosci Research Article BACKGROUND: G protein-coupled receptors (GPCRs) interact with heterotrimeric GTP-binding proteins (G proteins) to modulate acute changes in intracellular messenger levels and ion channel activity. In contrast, long-term changes in cellular growth, proliferation and differentiation are often mediated by tyrosine kinase receptors and certain GPCRs by activation of mitogen-activated protein (MAP) kinases. Complex interactions occur between these signaling pathways, but the specific mechanisms of such regulatory events are not well-understood. In particular it is not clear whether GPCRs are modulated by tyrosine kinase receptor-MAP kinase pathways. RESULTS: Here we describe tyrosine kinase receptor regulation of a GPCR via MAP kinase. Insulin reduced the activity of the 5-HT(2C )receptor in choroid plexus cells which was blocked by the MAP kinase kinase (MEK) inhibitor, PD 098059. We demonstrate that the inhibitory effect of insulin and insulin-like growth factor type 1 (IGF-1) on the 5-HT(2C )receptor is dependent on tyrosine kinase, RAS and MAP kinase. The effect may be receptor-specific: insulin had no effect on another GPCR that shares the same G protein signaling pathway as the 5-HT(2C )receptor. This effect is also direct: activated MAP kinase mimicked the effect of insulin, and removing a putative MAP kinase site from the 5-HT(2C )receptor abolished the effect of insulin. CONCLUSION: These results show that insulin signaling can inhibit 5-HT(2C )receptor activity and suggest that MAP kinase may play a direct role in regulating the function of a specific GPCR. BioMed Central 2003-06-09 /pmc/articles/PMC165579/ /pubmed/12795815 http://dx.doi.org/10.1186/1471-2202-4-10 Text en Copyright © 2003 Hurley et al; licensee BioMed Central Ltd. This is an Open Access article: verbatim copying and redistribution of this article are permitted in all media for any purpose, provided this notice is preserved along with the article's original URL.
spellingShingle Research Article
Hurley, Joyce H
Zhang, Shengwen
Bye, Leighan S
Marshall, Mark S
DePaoli-Roach, Anna A
Guan, Kunliang
Fox, Aaron P
Yu, Lei
Insulin signaling inhibits the 5-HT(2C )receptor in choroid plexus via MAP kinase
title Insulin signaling inhibits the 5-HT(2C )receptor in choroid plexus via MAP kinase
title_full Insulin signaling inhibits the 5-HT(2C )receptor in choroid plexus via MAP kinase
title_fullStr Insulin signaling inhibits the 5-HT(2C )receptor in choroid plexus via MAP kinase
title_full_unstemmed Insulin signaling inhibits the 5-HT(2C )receptor in choroid plexus via MAP kinase
title_short Insulin signaling inhibits the 5-HT(2C )receptor in choroid plexus via MAP kinase
title_sort insulin signaling inhibits the 5-ht(2c )receptor in choroid plexus via map kinase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC165579/
https://www.ncbi.nlm.nih.gov/pubmed/12795815
http://dx.doi.org/10.1186/1471-2202-4-10
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