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Focal Adhesion Kinase Plays a Role in Osteoblast Mechanotransduction In Vitro but Does Not Affect Load-Induced Bone Formation In Vivo

A healthy skeleton relies on bone's ability to respond to external mechanical forces. The molecular mechanisms by which bone cells sense and convert mechanical stimuli into biochemical signals, a process known as mechanotransduction, are unclear. Focal adhesions play a critical role in cell sur...

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Autores principales: Castillo, Alesha B., Blundo, Jennifer T., Chen, Julia C., Lee, Kristen L., Yereddi, Nikitha Reddy, Jang, Eugene, Kumar, Shefali, Tang, W. Joyce, Zarrin, Sarah, Kim, Jae-Beom, Jacobs, Christopher R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3448625/
https://www.ncbi.nlm.nih.gov/pubmed/23028449
http://dx.doi.org/10.1371/journal.pone.0043291
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author Castillo, Alesha B.
Blundo, Jennifer T.
Chen, Julia C.
Lee, Kristen L.
Yereddi, Nikitha Reddy
Jang, Eugene
Kumar, Shefali
Tang, W. Joyce
Zarrin, Sarah
Kim, Jae-Beom
Jacobs, Christopher R.
author_facet Castillo, Alesha B.
Blundo, Jennifer T.
Chen, Julia C.
Lee, Kristen L.
Yereddi, Nikitha Reddy
Jang, Eugene
Kumar, Shefali
Tang, W. Joyce
Zarrin, Sarah
Kim, Jae-Beom
Jacobs, Christopher R.
author_sort Castillo, Alesha B.
collection PubMed
description A healthy skeleton relies on bone's ability to respond to external mechanical forces. The molecular mechanisms by which bone cells sense and convert mechanical stimuli into biochemical signals, a process known as mechanotransduction, are unclear. Focal adhesions play a critical role in cell survival, migration and sensing physical force. Focal adhesion kinase (FAK) is a non-receptor protein tyrosine kinase that controls focal adhesion dynamics and can mediate reparative bone formation in vivo and osteoblast mechanotransduction in vitro. Based on these data, we hypothesized that FAK plays a role in load-induced bone formation. To test this hypothesis, we performed in vitro fluid flow experiments and in vivo bone loading studies in FAK−/− clonal lines and conditional FAK knockout mice, respectively. FAK−/− osteoblasts showed an ablated prostaglandin E(2) (PGE(2)) response to fluid flow shear. This effect was reversed with the re-expression of wild-type FAK. Re-expression of FAK containing site-specific mutations at Tyr-397 and Tyr-925 phosphorylation sites did not rescue the phenotype, suggesting that these sites are important in osteoblast mechanotransduction. Interestingly, mice in which FAK was conditionally deleted in osteoblasts and osteocytes did not exhibit altered load-induced periosteal bone formation. Together these data suggest that although FAK is important in mechanically-induced signaling in osteoblasts in vitro, it is not required for an adaptive response in vivo, possibly due to a compensatory mechanism that does not exist in the cell culture system.
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spelling pubmed-34486252012-10-01 Focal Adhesion Kinase Plays a Role in Osteoblast Mechanotransduction In Vitro but Does Not Affect Load-Induced Bone Formation In Vivo Castillo, Alesha B. Blundo, Jennifer T. Chen, Julia C. Lee, Kristen L. Yereddi, Nikitha Reddy Jang, Eugene Kumar, Shefali Tang, W. Joyce Zarrin, Sarah Kim, Jae-Beom Jacobs, Christopher R. PLoS One Research Article A healthy skeleton relies on bone's ability to respond to external mechanical forces. The molecular mechanisms by which bone cells sense and convert mechanical stimuli into biochemical signals, a process known as mechanotransduction, are unclear. Focal adhesions play a critical role in cell survival, migration and sensing physical force. Focal adhesion kinase (FAK) is a non-receptor protein tyrosine kinase that controls focal adhesion dynamics and can mediate reparative bone formation in vivo and osteoblast mechanotransduction in vitro. Based on these data, we hypothesized that FAK plays a role in load-induced bone formation. To test this hypothesis, we performed in vitro fluid flow experiments and in vivo bone loading studies in FAK−/− clonal lines and conditional FAK knockout mice, respectively. FAK−/− osteoblasts showed an ablated prostaglandin E(2) (PGE(2)) response to fluid flow shear. This effect was reversed with the re-expression of wild-type FAK. Re-expression of FAK containing site-specific mutations at Tyr-397 and Tyr-925 phosphorylation sites did not rescue the phenotype, suggesting that these sites are important in osteoblast mechanotransduction. Interestingly, mice in which FAK was conditionally deleted in osteoblasts and osteocytes did not exhibit altered load-induced periosteal bone formation. Together these data suggest that although FAK is important in mechanically-induced signaling in osteoblasts in vitro, it is not required for an adaptive response in vivo, possibly due to a compensatory mechanism that does not exist in the cell culture system. Public Library of Science 2012-09-21 /pmc/articles/PMC3448625/ /pubmed/23028449 http://dx.doi.org/10.1371/journal.pone.0043291 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Castillo, Alesha B.
Blundo, Jennifer T.
Chen, Julia C.
Lee, Kristen L.
Yereddi, Nikitha Reddy
Jang, Eugene
Kumar, Shefali
Tang, W. Joyce
Zarrin, Sarah
Kim, Jae-Beom
Jacobs, Christopher R.
Focal Adhesion Kinase Plays a Role in Osteoblast Mechanotransduction In Vitro but Does Not Affect Load-Induced Bone Formation In Vivo
title Focal Adhesion Kinase Plays a Role in Osteoblast Mechanotransduction In Vitro but Does Not Affect Load-Induced Bone Formation In Vivo
title_full Focal Adhesion Kinase Plays a Role in Osteoblast Mechanotransduction In Vitro but Does Not Affect Load-Induced Bone Formation In Vivo
title_fullStr Focal Adhesion Kinase Plays a Role in Osteoblast Mechanotransduction In Vitro but Does Not Affect Load-Induced Bone Formation In Vivo
title_full_unstemmed Focal Adhesion Kinase Plays a Role in Osteoblast Mechanotransduction In Vitro but Does Not Affect Load-Induced Bone Formation In Vivo
title_short Focal Adhesion Kinase Plays a Role in Osteoblast Mechanotransduction In Vitro but Does Not Affect Load-Induced Bone Formation In Vivo
title_sort focal adhesion kinase plays a role in osteoblast mechanotransduction in vitro but does not affect load-induced bone formation in vivo
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3448625/
https://www.ncbi.nlm.nih.gov/pubmed/23028449
http://dx.doi.org/10.1371/journal.pone.0043291
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