Cargando…

Mechano-transduction in Osteoblastic Cells Involves Strain-regulated Estrogen Receptor α-mediated Control of Insulin-like Growth Factor (IGF) I Receptor Sensitivity to Ambient IGF, Leading to Phosphatidylinositol 3-Kinase/AKT-dependent Wnt/LRP5 Receptor-independent Activation of β-Catenin Signaling

The capacity of bones to adjust their mass and architecture to withstand the loads of everyday activity derives from the ability of their resident cells to respond appropriately to the strains engendered. To elucidate the mechanisms of strain responsiveness in bone cells, we investigated in vitro th...

Descripción completa

Detalles Bibliográficos
Autores principales: Sunters, Andrew, Armstrong, Victoria J., Zaman, Gul, Kypta, Robert M., Kawano, Yoshiaki, Lanyon, Lance E., Price, Joanna S.
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2838297/
https://www.ncbi.nlm.nih.gov/pubmed/20042609
http://dx.doi.org/10.1074/jbc.M109.027086
_version_ 1782178868205977600
author Sunters, Andrew
Armstrong, Victoria J.
Zaman, Gul
Kypta, Robert M.
Kawano, Yoshiaki
Lanyon, Lance E.
Price, Joanna S.
author_facet Sunters, Andrew
Armstrong, Victoria J.
Zaman, Gul
Kypta, Robert M.
Kawano, Yoshiaki
Lanyon, Lance E.
Price, Joanna S.
author_sort Sunters, Andrew
collection PubMed
description The capacity of bones to adjust their mass and architecture to withstand the loads of everyday activity derives from the ability of their resident cells to respond appropriately to the strains engendered. To elucidate the mechanisms of strain responsiveness in bone cells, we investigated in vitro the responses of primary mouse osteoblasts and UMR-106 osteoblast-like cells to a single period of dynamic strain. This stimulates a cascade of events, including activation of insulin-like growth factor I receptor (IGF-IR), phosphatidylinositol 3-kinase-mediated phosphorylation of AKT, inhibition of GSK-3β, increased activation of β-catenin, and associated lymphoid-enhancing factor/T cell factor-mediated transcription. Initiation of this pathway does not involve the Wnt/LRP5/Frizzled receptor and does not culminate in increased IGF transcription. The effect of strain on IGF-IR is mimicked by exogenous des-(1–3)IGF-I and is blocked by the IGF-IR inhibitor H1356. Inhibition of strain-related prostanoid and nitric oxide production inhibits strain-related (and basal) AKT activity, but their separate ectopic administration does not mimic it. Strain-related IGF-IR activation of AKT requires estrogen receptor α (ERα) with which IGF-1R physically associates. The ER blocker ICI 182,780 increases the concentration of des-(1–3)IGF-I necessary to activate this cascade, whereas estrogen inhibits both basal AKT activity and its activation by des-(1–3)IGF-I. These data suggest an initial cascade of strain-related events in osteoblasts in which strain activates IGF-IR, in association with ERα, so initiating phosphatidylinositol 3-kinase/AKT-dependent activation of β-catenin and altered lymphoid-enhancing factor/T cell factor transcription. This cascade requires prostanoid/nitric oxide production and is independent of Wnt/LRP5.
format Text
id pubmed-2838297
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-28382972010-04-02 Mechano-transduction in Osteoblastic Cells Involves Strain-regulated Estrogen Receptor α-mediated Control of Insulin-like Growth Factor (IGF) I Receptor Sensitivity to Ambient IGF, Leading to Phosphatidylinositol 3-Kinase/AKT-dependent Wnt/LRP5 Receptor-independent Activation of β-Catenin Signaling Sunters, Andrew Armstrong, Victoria J. Zaman, Gul Kypta, Robert M. Kawano, Yoshiaki Lanyon, Lance E. Price, Joanna S. J Biol Chem Cell Biology The capacity of bones to adjust their mass and architecture to withstand the loads of everyday activity derives from the ability of their resident cells to respond appropriately to the strains engendered. To elucidate the mechanisms of strain responsiveness in bone cells, we investigated in vitro the responses of primary mouse osteoblasts and UMR-106 osteoblast-like cells to a single period of dynamic strain. This stimulates a cascade of events, including activation of insulin-like growth factor I receptor (IGF-IR), phosphatidylinositol 3-kinase-mediated phosphorylation of AKT, inhibition of GSK-3β, increased activation of β-catenin, and associated lymphoid-enhancing factor/T cell factor-mediated transcription. Initiation of this pathway does not involve the Wnt/LRP5/Frizzled receptor and does not culminate in increased IGF transcription. The effect of strain on IGF-IR is mimicked by exogenous des-(1–3)IGF-I and is blocked by the IGF-IR inhibitor H1356. Inhibition of strain-related prostanoid and nitric oxide production inhibits strain-related (and basal) AKT activity, but their separate ectopic administration does not mimic it. Strain-related IGF-IR activation of AKT requires estrogen receptor α (ERα) with which IGF-1R physically associates. The ER blocker ICI 182,780 increases the concentration of des-(1–3)IGF-I necessary to activate this cascade, whereas estrogen inhibits both basal AKT activity and its activation by des-(1–3)IGF-I. These data suggest an initial cascade of strain-related events in osteoblasts in which strain activates IGF-IR, in association with ERα, so initiating phosphatidylinositol 3-kinase/AKT-dependent activation of β-catenin and altered lymphoid-enhancing factor/T cell factor transcription. This cascade requires prostanoid/nitric oxide production and is independent of Wnt/LRP5. American Society for Biochemistry and Molecular Biology 2010-03-19 2009-12-30 /pmc/articles/PMC2838297/ /pubmed/20042609 http://dx.doi.org/10.1074/jbc.M109.027086 Text en © 2010 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Cell Biology
Sunters, Andrew
Armstrong, Victoria J.
Zaman, Gul
Kypta, Robert M.
Kawano, Yoshiaki
Lanyon, Lance E.
Price, Joanna S.
Mechano-transduction in Osteoblastic Cells Involves Strain-regulated Estrogen Receptor α-mediated Control of Insulin-like Growth Factor (IGF) I Receptor Sensitivity to Ambient IGF, Leading to Phosphatidylinositol 3-Kinase/AKT-dependent Wnt/LRP5 Receptor-independent Activation of β-Catenin Signaling
title Mechano-transduction in Osteoblastic Cells Involves Strain-regulated Estrogen Receptor α-mediated Control of Insulin-like Growth Factor (IGF) I Receptor Sensitivity to Ambient IGF, Leading to Phosphatidylinositol 3-Kinase/AKT-dependent Wnt/LRP5 Receptor-independent Activation of β-Catenin Signaling
title_full Mechano-transduction in Osteoblastic Cells Involves Strain-regulated Estrogen Receptor α-mediated Control of Insulin-like Growth Factor (IGF) I Receptor Sensitivity to Ambient IGF, Leading to Phosphatidylinositol 3-Kinase/AKT-dependent Wnt/LRP5 Receptor-independent Activation of β-Catenin Signaling
title_fullStr Mechano-transduction in Osteoblastic Cells Involves Strain-regulated Estrogen Receptor α-mediated Control of Insulin-like Growth Factor (IGF) I Receptor Sensitivity to Ambient IGF, Leading to Phosphatidylinositol 3-Kinase/AKT-dependent Wnt/LRP5 Receptor-independent Activation of β-Catenin Signaling
title_full_unstemmed Mechano-transduction in Osteoblastic Cells Involves Strain-regulated Estrogen Receptor α-mediated Control of Insulin-like Growth Factor (IGF) I Receptor Sensitivity to Ambient IGF, Leading to Phosphatidylinositol 3-Kinase/AKT-dependent Wnt/LRP5 Receptor-independent Activation of β-Catenin Signaling
title_short Mechano-transduction in Osteoblastic Cells Involves Strain-regulated Estrogen Receptor α-mediated Control of Insulin-like Growth Factor (IGF) I Receptor Sensitivity to Ambient IGF, Leading to Phosphatidylinositol 3-Kinase/AKT-dependent Wnt/LRP5 Receptor-independent Activation of β-Catenin Signaling
title_sort mechano-transduction in osteoblastic cells involves strain-regulated estrogen receptor α-mediated control of insulin-like growth factor (igf) i receptor sensitivity to ambient igf, leading to phosphatidylinositol 3-kinase/akt-dependent wnt/lrp5 receptor-independent activation of β-catenin signaling
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2838297/
https://www.ncbi.nlm.nih.gov/pubmed/20042609
http://dx.doi.org/10.1074/jbc.M109.027086
work_keys_str_mv AT suntersandrew mechanotransductioninosteoblasticcellsinvolvesstrainregulatedestrogenreceptoramediatedcontrolofinsulinlikegrowthfactorigfireceptorsensitivitytoambientigfleadingtophosphatidylinositol3kinaseaktdependentwntlrp5receptorindependentactivationofbcateninsignalin
AT armstrongvictoriaj mechanotransductioninosteoblasticcellsinvolvesstrainregulatedestrogenreceptoramediatedcontrolofinsulinlikegrowthfactorigfireceptorsensitivitytoambientigfleadingtophosphatidylinositol3kinaseaktdependentwntlrp5receptorindependentactivationofbcateninsignalin
AT zamangul mechanotransductioninosteoblasticcellsinvolvesstrainregulatedestrogenreceptoramediatedcontrolofinsulinlikegrowthfactorigfireceptorsensitivitytoambientigfleadingtophosphatidylinositol3kinaseaktdependentwntlrp5receptorindependentactivationofbcateninsignalin
AT kyptarobertm mechanotransductioninosteoblasticcellsinvolvesstrainregulatedestrogenreceptoramediatedcontrolofinsulinlikegrowthfactorigfireceptorsensitivitytoambientigfleadingtophosphatidylinositol3kinaseaktdependentwntlrp5receptorindependentactivationofbcateninsignalin
AT kawanoyoshiaki mechanotransductioninosteoblasticcellsinvolvesstrainregulatedestrogenreceptoramediatedcontrolofinsulinlikegrowthfactorigfireceptorsensitivitytoambientigfleadingtophosphatidylinositol3kinaseaktdependentwntlrp5receptorindependentactivationofbcateninsignalin
AT lanyonlancee mechanotransductioninosteoblasticcellsinvolvesstrainregulatedestrogenreceptoramediatedcontrolofinsulinlikegrowthfactorigfireceptorsensitivitytoambientigfleadingtophosphatidylinositol3kinaseaktdependentwntlrp5receptorindependentactivationofbcateninsignalin
AT pricejoannas mechanotransductioninosteoblasticcellsinvolvesstrainregulatedestrogenreceptoramediatedcontrolofinsulinlikegrowthfactorigfireceptorsensitivitytoambientigfleadingtophosphatidylinositol3kinaseaktdependentwntlrp5receptorindependentactivationofbcateninsignalin