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Distinctive Subcellular Inhibition of Cytokine-Induced Src by Salubrinal and Fluid Flow

A non-receptor protein kinase Src plays a crucial role in fundamental cell functions such as proliferation, migration, and differentiation. While inhibition of Src is reported to contribute to chondrocyte homeostasis, its regulation at a subcellular level by chemical inhibitors and mechanical stimul...

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Autores principales: Wan, Qiaoqiao, Xu, Wenxiao, Yan, Jing-long, Yokota, Hiroki, Na, Sungsoo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4144888/
https://www.ncbi.nlm.nih.gov/pubmed/25157407
http://dx.doi.org/10.1371/journal.pone.0105699
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author Wan, Qiaoqiao
Xu, Wenxiao
Yan, Jing-long
Yokota, Hiroki
Na, Sungsoo
author_facet Wan, Qiaoqiao
Xu, Wenxiao
Yan, Jing-long
Yokota, Hiroki
Na, Sungsoo
author_sort Wan, Qiaoqiao
collection PubMed
description A non-receptor protein kinase Src plays a crucial role in fundamental cell functions such as proliferation, migration, and differentiation. While inhibition of Src is reported to contribute to chondrocyte homeostasis, its regulation at a subcellular level by chemical inhibitors and mechanical stimulation has not been fully understood. In response to inflammatory cytokines and stress to the endoplasmic reticulum (ER) that increase proteolytic activities in chondrocytes, we addressed two questions: Do cytokines such as interleukin 1 beta (IL1β) and tumor necrosis factor alpha (TNFα) induce location-dependent Src activation? Can cytokine-induced Src activation be suppressed by chemically alleviating ER stress or by applying fluid flow? Using live cell imaging with two Src biosensors (i.e., cytosolic, and plasma membrane-bound biosensors) for a fluorescence resonance energy transfer (FRET) technique, we determined cytosolic Src activity as well as membrane-bound Src activity in C28/I2 human chondrocytes. In response to TNFα and IL1β, both cytosolic and plasma membrane-bound Src proteins were activated, but activation in the cytosol occurred earlier than that in the plasma membrane. Treatment with salubrinal or guanabenz, two chemical agents that attenuate ER stress, significantly decreased cytokine-induced Src activities in the cytosol, but not in the plasma membrane. In contrast, fluid flow reduced Src activities in the plasma membrane, but not in the cytosol. Collectively, the results demonstrate that Src activity is differentially regulated by salubrinal/guanabenz and fluid flow in the cytosol and plasma membrane.
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spelling pubmed-41448882014-08-29 Distinctive Subcellular Inhibition of Cytokine-Induced Src by Salubrinal and Fluid Flow Wan, Qiaoqiao Xu, Wenxiao Yan, Jing-long Yokota, Hiroki Na, Sungsoo PLoS One Research Article A non-receptor protein kinase Src plays a crucial role in fundamental cell functions such as proliferation, migration, and differentiation. While inhibition of Src is reported to contribute to chondrocyte homeostasis, its regulation at a subcellular level by chemical inhibitors and mechanical stimulation has not been fully understood. In response to inflammatory cytokines and stress to the endoplasmic reticulum (ER) that increase proteolytic activities in chondrocytes, we addressed two questions: Do cytokines such as interleukin 1 beta (IL1β) and tumor necrosis factor alpha (TNFα) induce location-dependent Src activation? Can cytokine-induced Src activation be suppressed by chemically alleviating ER stress or by applying fluid flow? Using live cell imaging with two Src biosensors (i.e., cytosolic, and plasma membrane-bound biosensors) for a fluorescence resonance energy transfer (FRET) technique, we determined cytosolic Src activity as well as membrane-bound Src activity in C28/I2 human chondrocytes. In response to TNFα and IL1β, both cytosolic and plasma membrane-bound Src proteins were activated, but activation in the cytosol occurred earlier than that in the plasma membrane. Treatment with salubrinal or guanabenz, two chemical agents that attenuate ER stress, significantly decreased cytokine-induced Src activities in the cytosol, but not in the plasma membrane. In contrast, fluid flow reduced Src activities in the plasma membrane, but not in the cytosol. Collectively, the results demonstrate that Src activity is differentially regulated by salubrinal/guanabenz and fluid flow in the cytosol and plasma membrane. Public Library of Science 2014-08-26 /pmc/articles/PMC4144888/ /pubmed/25157407 http://dx.doi.org/10.1371/journal.pone.0105699 Text en © 2014 Wan 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
Wan, Qiaoqiao
Xu, Wenxiao
Yan, Jing-long
Yokota, Hiroki
Na, Sungsoo
Distinctive Subcellular Inhibition of Cytokine-Induced Src by Salubrinal and Fluid Flow
title Distinctive Subcellular Inhibition of Cytokine-Induced Src by Salubrinal and Fluid Flow
title_full Distinctive Subcellular Inhibition of Cytokine-Induced Src by Salubrinal and Fluid Flow
title_fullStr Distinctive Subcellular Inhibition of Cytokine-Induced Src by Salubrinal and Fluid Flow
title_full_unstemmed Distinctive Subcellular Inhibition of Cytokine-Induced Src by Salubrinal and Fluid Flow
title_short Distinctive Subcellular Inhibition of Cytokine-Induced Src by Salubrinal and Fluid Flow
title_sort distinctive subcellular inhibition of cytokine-induced src by salubrinal and fluid flow
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4144888/
https://www.ncbi.nlm.nih.gov/pubmed/25157407
http://dx.doi.org/10.1371/journal.pone.0105699
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