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Matrix Stiffness Regulates Endothelial Cell Proliferation through Septin 9

Endothelial proliferation, which is an important process in vascular homeostasis, can be regulated by the extracellular microenvironment. In this study we demonstrated that proliferation of endothelial cells (ECs) was enhanced on hydrogels with high stiffness (HSG, 21.5 kPa) in comparison to those w...

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Autores principales: Yeh, Yi-Ting, Hur, Sung Sik, Chang, Joann, Wang, Kuei-Chun, Chiu, Jeng-Jiann, Li, Yi-Shuan, Chien, Shu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3485289/
https://www.ncbi.nlm.nih.gov/pubmed/23118862
http://dx.doi.org/10.1371/journal.pone.0046889
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author Yeh, Yi-Ting
Hur, Sung Sik
Chang, Joann
Wang, Kuei-Chun
Chiu, Jeng-Jiann
Li, Yi-Shuan
Chien, Shu
author_facet Yeh, Yi-Ting
Hur, Sung Sik
Chang, Joann
Wang, Kuei-Chun
Chiu, Jeng-Jiann
Li, Yi-Shuan
Chien, Shu
author_sort Yeh, Yi-Ting
collection PubMed
description Endothelial proliferation, which is an important process in vascular homeostasis, can be regulated by the extracellular microenvironment. In this study we demonstrated that proliferation of endothelial cells (ECs) was enhanced on hydrogels with high stiffness (HSG, 21.5 kPa) in comparison to those with low stiffness (LSG, 1.72 kPa). ECs on HSG showed markedly prominent stress fibers and a higher RhoA activity than ECs on LSG. Blockade of RhoA attenuated stress fiber formation and proliferation of ECs on HSG, but had little effect on ECs on LSG; enhancement of RhoA had opposite effects. The phosphorylations of Src and Vav2, which are positive RhoA upstream effectors, were higher in ECs on HSG. The inhibition of Src/Vav2 attenuated the HSG-mediated RhoA activation and EC proliferation but exhibited nominal effects on ECs on LSG. Septin 9 (SEPT9), the negative upstream effector for RhoA, was significantly higher in ECs on LSG. The inhibition of SEPT9 increased RhoA activation, Src/Vav2 phosphorylations, and EC proliferation on LSG, but showed minor effects on ECs on HSG. We further demonstrated that the inactivation of integrin α(v)β(3) caused an increase of SEPT9 expression in ECs on HSG to attenuate Src/Vav2 phosphorylations and inhibit RhoA-dependent EC proliferation. These results demonstrate that the SEPT9/Src/Vav2/RhoA pathway constitutes an important molecular mechanism for the mechanical regulation of EC proliferation.
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spelling pubmed-34852892012-11-01 Matrix Stiffness Regulates Endothelial Cell Proliferation through Septin 9 Yeh, Yi-Ting Hur, Sung Sik Chang, Joann Wang, Kuei-Chun Chiu, Jeng-Jiann Li, Yi-Shuan Chien, Shu PLoS One Research Article Endothelial proliferation, which is an important process in vascular homeostasis, can be regulated by the extracellular microenvironment. In this study we demonstrated that proliferation of endothelial cells (ECs) was enhanced on hydrogels with high stiffness (HSG, 21.5 kPa) in comparison to those with low stiffness (LSG, 1.72 kPa). ECs on HSG showed markedly prominent stress fibers and a higher RhoA activity than ECs on LSG. Blockade of RhoA attenuated stress fiber formation and proliferation of ECs on HSG, but had little effect on ECs on LSG; enhancement of RhoA had opposite effects. The phosphorylations of Src and Vav2, which are positive RhoA upstream effectors, were higher in ECs on HSG. The inhibition of Src/Vav2 attenuated the HSG-mediated RhoA activation and EC proliferation but exhibited nominal effects on ECs on LSG. Septin 9 (SEPT9), the negative upstream effector for RhoA, was significantly higher in ECs on LSG. The inhibition of SEPT9 increased RhoA activation, Src/Vav2 phosphorylations, and EC proliferation on LSG, but showed minor effects on ECs on HSG. We further demonstrated that the inactivation of integrin α(v)β(3) caused an increase of SEPT9 expression in ECs on HSG to attenuate Src/Vav2 phosphorylations and inhibit RhoA-dependent EC proliferation. These results demonstrate that the SEPT9/Src/Vav2/RhoA pathway constitutes an important molecular mechanism for the mechanical regulation of EC proliferation. Public Library of Science 2012-10-31 /pmc/articles/PMC3485289/ /pubmed/23118862 http://dx.doi.org/10.1371/journal.pone.0046889 Text en © 2012 Yeh et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Yeh, Yi-Ting
Hur, Sung Sik
Chang, Joann
Wang, Kuei-Chun
Chiu, Jeng-Jiann
Li, Yi-Shuan
Chien, Shu
Matrix Stiffness Regulates Endothelial Cell Proliferation through Septin 9
title Matrix Stiffness Regulates Endothelial Cell Proliferation through Septin 9
title_full Matrix Stiffness Regulates Endothelial Cell Proliferation through Septin 9
title_fullStr Matrix Stiffness Regulates Endothelial Cell Proliferation through Septin 9
title_full_unstemmed Matrix Stiffness Regulates Endothelial Cell Proliferation through Septin 9
title_short Matrix Stiffness Regulates Endothelial Cell Proliferation through Septin 9
title_sort matrix stiffness regulates endothelial cell proliferation through septin 9
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3485289/
https://www.ncbi.nlm.nih.gov/pubmed/23118862
http://dx.doi.org/10.1371/journal.pone.0046889
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