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SHP-2 Binds to Caveolin-1 and Regulates Src Activity via Competitive Inhibition of CSK in Response to H(2)O(2) in Astrocytes

Reactive oxygen species (ROS) regulate diverse cellular functions by triggering signal transduction events, such as Src and mitogen-activated protein (MAP) kinases. Here, we report the role of caveolin-1 and Src homology 2 domain-containing protein tyrosine phosphatase 2 (SHP-2) in H(2)O(2)-induced...

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Autores principales: Jo, Ara, Park, Hyunju, Lee, Sung-Hee, Ahn, So-Hee, Kim, Hee Ja, Park, Eun-Mi, Choi, Youn-Hee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3954793/
https://www.ncbi.nlm.nih.gov/pubmed/24632723
http://dx.doi.org/10.1371/journal.pone.0091582
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author Jo, Ara
Park, Hyunju
Lee, Sung-Hee
Ahn, So-Hee
Kim, Hee Ja
Park, Eun-Mi
Choi, Youn-Hee
author_facet Jo, Ara
Park, Hyunju
Lee, Sung-Hee
Ahn, So-Hee
Kim, Hee Ja
Park, Eun-Mi
Choi, Youn-Hee
author_sort Jo, Ara
collection PubMed
description Reactive oxygen species (ROS) regulate diverse cellular functions by triggering signal transduction events, such as Src and mitogen-activated protein (MAP) kinases. Here, we report the role of caveolin-1 and Src homology 2 domain-containing protein tyrosine phosphatase 2 (SHP-2) in H(2)O(2)-induced signaling pathway in brain astrocytes. H(2)O(2)-mediated oxidative stress induced phosphorylation of caveolin-1 and association between p-caveolin-1 and SHP-2. SHP-2 specifically bound to wild-type caveolin-1 similarly to c-Src tyrosine kinase (CSK), but not to phosphorylation-deficient mutant of caveolin-1 (Y14A), and interfered with complex formation between caveolin-1 and CSK. In the presence of CSK siRNA, binding between caveolin-1 and SHP-2 was enhanced by H(2)O(2) treatment, which led to reduced Src phosphorylation at tyrosine (Tyr) 530 and enhanced Src phosphorylation at Tyr 419. In contrast, siRNA targeting of SHP-2 facilitated H(2)O(2)-mediated interaction between caveolin-1 and CSK and enhanced Src phosphorylation at Tyr 530, leading to subsequent decrease in Src downstream signaling, such as focal adhesion kinase (FAK) and extracellular signal-related kinase (ERK). Our results collectively indicate that SHP-2 alters Src kinase activity by interfering with the complex formation between CSK and phosphotyrosine caveolin-1 in the presence of H(2)O(2), thus functions as a positive regulator in Src signaling under oxidative stress in brain astrocytes.
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spelling pubmed-39547932014-03-18 SHP-2 Binds to Caveolin-1 and Regulates Src Activity via Competitive Inhibition of CSK in Response to H(2)O(2) in Astrocytes Jo, Ara Park, Hyunju Lee, Sung-Hee Ahn, So-Hee Kim, Hee Ja Park, Eun-Mi Choi, Youn-Hee PLoS One Research Article Reactive oxygen species (ROS) regulate diverse cellular functions by triggering signal transduction events, such as Src and mitogen-activated protein (MAP) kinases. Here, we report the role of caveolin-1 and Src homology 2 domain-containing protein tyrosine phosphatase 2 (SHP-2) in H(2)O(2)-induced signaling pathway in brain astrocytes. H(2)O(2)-mediated oxidative stress induced phosphorylation of caveolin-1 and association between p-caveolin-1 and SHP-2. SHP-2 specifically bound to wild-type caveolin-1 similarly to c-Src tyrosine kinase (CSK), but not to phosphorylation-deficient mutant of caveolin-1 (Y14A), and interfered with complex formation between caveolin-1 and CSK. In the presence of CSK siRNA, binding between caveolin-1 and SHP-2 was enhanced by H(2)O(2) treatment, which led to reduced Src phosphorylation at tyrosine (Tyr) 530 and enhanced Src phosphorylation at Tyr 419. In contrast, siRNA targeting of SHP-2 facilitated H(2)O(2)-mediated interaction between caveolin-1 and CSK and enhanced Src phosphorylation at Tyr 530, leading to subsequent decrease in Src downstream signaling, such as focal adhesion kinase (FAK) and extracellular signal-related kinase (ERK). Our results collectively indicate that SHP-2 alters Src kinase activity by interfering with the complex formation between CSK and phosphotyrosine caveolin-1 in the presence of H(2)O(2), thus functions as a positive regulator in Src signaling under oxidative stress in brain astrocytes. Public Library of Science 2014-03-14 /pmc/articles/PMC3954793/ /pubmed/24632723 http://dx.doi.org/10.1371/journal.pone.0091582 Text en © 2014 Jo 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
Jo, Ara
Park, Hyunju
Lee, Sung-Hee
Ahn, So-Hee
Kim, Hee Ja
Park, Eun-Mi
Choi, Youn-Hee
SHP-2 Binds to Caveolin-1 and Regulates Src Activity via Competitive Inhibition of CSK in Response to H(2)O(2) in Astrocytes
title SHP-2 Binds to Caveolin-1 and Regulates Src Activity via Competitive Inhibition of CSK in Response to H(2)O(2) in Astrocytes
title_full SHP-2 Binds to Caveolin-1 and Regulates Src Activity via Competitive Inhibition of CSK in Response to H(2)O(2) in Astrocytes
title_fullStr SHP-2 Binds to Caveolin-1 and Regulates Src Activity via Competitive Inhibition of CSK in Response to H(2)O(2) in Astrocytes
title_full_unstemmed SHP-2 Binds to Caveolin-1 and Regulates Src Activity via Competitive Inhibition of CSK in Response to H(2)O(2) in Astrocytes
title_short SHP-2 Binds to Caveolin-1 and Regulates Src Activity via Competitive Inhibition of CSK in Response to H(2)O(2) in Astrocytes
title_sort shp-2 binds to caveolin-1 and regulates src activity via competitive inhibition of csk in response to h(2)o(2) in astrocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3954793/
https://www.ncbi.nlm.nih.gov/pubmed/24632723
http://dx.doi.org/10.1371/journal.pone.0091582
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