Leptin and insulin stimulation of signalling pathways in arcuate nucleus neurones: PI3K dependent actin reorganization and K<sub>ATP </sub>channel activation

<p>Abstract</p> <p>Background</p> <p>Leptin and insulin are long-term regulators of body weight. They act in hypothalamic centres to modulate the function of specific neuronal subtypes, by altering transcriptional control of releasable peptides and by modifying neuronal...

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Main Authors: Gray Alexander, Burgess Laura A, Anderson Erin, Ning Ke, Laidlaw Hilary A, Mirshamsi Shirin, Sutherland Calum, Ashford Michael LJ
Format: Article
Language:English
Published: BMC 2004-12-01
Series:BMC Neuroscience
Online Access:http://www.biomedcentral.com/1471-2202/5/54
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spelling doaj-ea5a3968ad0940168f45e9160d77f0a02020-11-24T21:45:46ZengBMCBMC Neuroscience1471-22022004-12-01515410.1186/1471-2202-5-54Leptin and insulin stimulation of signalling pathways in arcuate nucleus neurones: PI3K dependent actin reorganization and K<sub>ATP </sub>channel activationGray AlexanderBurgess Laura AAnderson ErinNing KeLaidlaw Hilary AMirshamsi ShirinSutherland CalumAshford Michael LJ<p>Abstract</p> <p>Background</p> <p>Leptin and insulin are long-term regulators of body weight. They act in hypothalamic centres to modulate the function of specific neuronal subtypes, by altering transcriptional control of releasable peptides and by modifying neuronal electrical activity. A key cellular signalling intermediate, implicated in control of food intake by these hormones, is the enzyme phosphoinositide 3-kinase. In this study we have explored further the linkage between this enzyme and other cellular mediators of leptin and insulin action on rat arcuate nucleus neurones and the mouse hypothalamic cell line, GT1-7.</p> <p>Results</p> <p>Leptin and insulin increased the levels of various phosphorylated signalling intermediates, associated with the JAK2-STAT3, MAPK and PI3K cascades in the arcuate nucleus. Inhibitors of PI3K were shown to reduce the hormone driven phosphorylation through the PI3K and MAPK pathways. Using isolated arcuate neurones, leptin and insulin were demonstrated to increase the activity of K<sub>ATP </sub>channels in a PI3K dependent manner, and to increase levels of PtdIns(3,4,5)P<sub>3</sub>. K<sub>ATP </sub>activation by these hormones in arcuate neurones was also sensitive to the presence of the actin filament stabilising toxin, jasplakinolide. Using confocal imaging of fluorescently labelled actin and direct analysis of G- and F-actin concentration in GT1-7 cells, leptin was demonstrated directly to induce a re-organization of cellular actin, by increasing levels of globular actin at the expense of filamentous actin in a PI3-kinase dependent manner. Leptin stimulated PI3-kinase activity in GT1-7 cells and an increase in PtdIns(3,4,5)P<sub>3 </sub>could be detected, which was prevented by PI3K inhibitors.</p> <p>Conclusions</p> <p>Leptin and insulin mediated phosphorylation of cellular signalling intermediates and of K<sub>ATP </sub>channel activation in arcuate neurones is sensitive to PI3K inhibition, thus strengthening further the likely importance of this enzyme in leptin and insulin mediated energy homeostasis control. The sensitivity of leptin and insulin stimulation of K<sub>ATP </sub>channel opening in arcuate neurones to jasplakinolide indicates that cytoskeletal remodelling may be an important contributor to the cellular signalling mechanisms of these hormones in hypothalamic neurones. This hypothesis is reinforced by the finding that leptin induces actin filament depolymerization, in a PI3K dependent manner in a mouse hypothalamic cell line.</p> http://www.biomedcentral.com/1471-2202/5/54
collection DOAJ
language English
format Article
sources DOAJ
author Gray Alexander
Burgess Laura A
Anderson Erin
Ning Ke
Laidlaw Hilary A
Mirshamsi Shirin
Sutherland Calum
Ashford Michael LJ
spellingShingle Gray Alexander
Burgess Laura A
Anderson Erin
Ning Ke
Laidlaw Hilary A
Mirshamsi Shirin
Sutherland Calum
Ashford Michael LJ
Leptin and insulin stimulation of signalling pathways in arcuate nucleus neurones: PI3K dependent actin reorganization and K<sub>ATP </sub>channel activation
BMC Neuroscience
author_facet Gray Alexander
Burgess Laura A
Anderson Erin
Ning Ke
Laidlaw Hilary A
Mirshamsi Shirin
Sutherland Calum
Ashford Michael LJ
author_sort Gray Alexander
title Leptin and insulin stimulation of signalling pathways in arcuate nucleus neurones: PI3K dependent actin reorganization and K<sub>ATP </sub>channel activation
title_short Leptin and insulin stimulation of signalling pathways in arcuate nucleus neurones: PI3K dependent actin reorganization and K<sub>ATP </sub>channel activation
title_full Leptin and insulin stimulation of signalling pathways in arcuate nucleus neurones: PI3K dependent actin reorganization and K<sub>ATP </sub>channel activation
title_fullStr Leptin and insulin stimulation of signalling pathways in arcuate nucleus neurones: PI3K dependent actin reorganization and K<sub>ATP </sub>channel activation
title_full_unstemmed Leptin and insulin stimulation of signalling pathways in arcuate nucleus neurones: PI3K dependent actin reorganization and K<sub>ATP </sub>channel activation
title_sort leptin and insulin stimulation of signalling pathways in arcuate nucleus neurones: pi3k dependent actin reorganization and k<sub>atp </sub>channel activation
publisher BMC
series BMC Neuroscience
issn 1471-2202
publishDate 2004-12-01
description <p>Abstract</p> <p>Background</p> <p>Leptin and insulin are long-term regulators of body weight. They act in hypothalamic centres to modulate the function of specific neuronal subtypes, by altering transcriptional control of releasable peptides and by modifying neuronal electrical activity. A key cellular signalling intermediate, implicated in control of food intake by these hormones, is the enzyme phosphoinositide 3-kinase. In this study we have explored further the linkage between this enzyme and other cellular mediators of leptin and insulin action on rat arcuate nucleus neurones and the mouse hypothalamic cell line, GT1-7.</p> <p>Results</p> <p>Leptin and insulin increased the levels of various phosphorylated signalling intermediates, associated with the JAK2-STAT3, MAPK and PI3K cascades in the arcuate nucleus. Inhibitors of PI3K were shown to reduce the hormone driven phosphorylation through the PI3K and MAPK pathways. Using isolated arcuate neurones, leptin and insulin were demonstrated to increase the activity of K<sub>ATP </sub>channels in a PI3K dependent manner, and to increase levels of PtdIns(3,4,5)P<sub>3</sub>. K<sub>ATP </sub>activation by these hormones in arcuate neurones was also sensitive to the presence of the actin filament stabilising toxin, jasplakinolide. Using confocal imaging of fluorescently labelled actin and direct analysis of G- and F-actin concentration in GT1-7 cells, leptin was demonstrated directly to induce a re-organization of cellular actin, by increasing levels of globular actin at the expense of filamentous actin in a PI3-kinase dependent manner. Leptin stimulated PI3-kinase activity in GT1-7 cells and an increase in PtdIns(3,4,5)P<sub>3 </sub>could be detected, which was prevented by PI3K inhibitors.</p> <p>Conclusions</p> <p>Leptin and insulin mediated phosphorylation of cellular signalling intermediates and of K<sub>ATP </sub>channel activation in arcuate neurones is sensitive to PI3K inhibition, thus strengthening further the likely importance of this enzyme in leptin and insulin mediated energy homeostasis control. The sensitivity of leptin and insulin stimulation of K<sub>ATP </sub>channel opening in arcuate neurones to jasplakinolide indicates that cytoskeletal remodelling may be an important contributor to the cellular signalling mechanisms of these hormones in hypothalamic neurones. This hypothesis is reinforced by the finding that leptin induces actin filament depolymerization, in a PI3K dependent manner in a mouse hypothalamic cell line.</p>
url http://www.biomedcentral.com/1471-2202/5/54
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