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Modulation of store-operated calcium entry and nascent adhesion by p21-activated kinase 1

Calcium mobilization is necessary for cell movement during embryonic development, lymphocyte synapse formation, wound healing, and cancer cell metastasis. Depletion of calcium in the lumen of the endoplasmic reticulum using inositol triphosphate (IP3) or thapsigargin (TG) is known to induce oligomer...

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Autores principales: Jeon, In-Sook, Kim, Hye-Ryun, Shin, Eun-Young, Kim, Eung-Gook, Han, Heon-Seok, Hong, Jin-Tae, Lee, Hak-Kyo, Song, Ki-Duk, Choi, Joong-Kook
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5960643/
https://www.ncbi.nlm.nih.gov/pubmed/29780159
http://dx.doi.org/10.1038/s12276-018-0093-2
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author Jeon, In-Sook
Kim, Hye-Ryun
Shin, Eun-Young
Kim, Eung-Gook
Han, Heon-Seok
Hong, Jin-Tae
Lee, Hak-Kyo
Song, Ki-Duk
Choi, Joong-Kook
author_facet Jeon, In-Sook
Kim, Hye-Ryun
Shin, Eun-Young
Kim, Eung-Gook
Han, Heon-Seok
Hong, Jin-Tae
Lee, Hak-Kyo
Song, Ki-Duk
Choi, Joong-Kook
author_sort Jeon, In-Sook
collection PubMed
description Calcium mobilization is necessary for cell movement during embryonic development, lymphocyte synapse formation, wound healing, and cancer cell metastasis. Depletion of calcium in the lumen of the endoplasmic reticulum using inositol triphosphate (IP3) or thapsigargin (TG) is known to induce oligomerization and cytoskeleton-mediated translocation of stromal interaction molecule 1 (STIM1) to the plasma membrane, where it interacts with the calcium release-activated calcium channel Orai1 to mediate calcium influx; this process is referred to as store-operated calcium entry (SOCE). Furthermore, aberrant STIM1 or SOCE regulation is associated with cancer cell motility and metastasis. The p21-activated kinases (PAKs), which are downstream effectors of GTPases, reportedly regulate cytoskeletal organization, protrusive activity, and cell migration. Although cytoskeletal remodeling apparently contributes to calcium mobilization via SOCE, and vice versa, the mechanisms by which they regulate each other remain unclear. In this study, we aimed to characterize whether PAK1 modulates calcium mobilization and STIM1 localization. Our data demonstrate that PAK1 interacts with STIM1 in vitro and that this interaction was enhanced by treatment with a nascent adhesion inducer, such as phorbol 12,13-dibutyrate (PDBu). Under basal conditions, both proteins appeared to primarily colocalize in the cytosol, whereas treatment with PDBu induced their colocalization to vinculin-positive peripheral adhesions. Downregulation of PAK1 activity via chemical inhibitors or by PAK1 shDNA expression impaired STIM1-mediated calcium mobilization via SOCE. Based on these findings, we propose that PAK1 interacts with STIM1 to regulate calcium mobilization and the formation of cellular adhesions.
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spelling pubmed-59606432018-05-31 Modulation of store-operated calcium entry and nascent adhesion by p21-activated kinase 1 Jeon, In-Sook Kim, Hye-Ryun Shin, Eun-Young Kim, Eung-Gook Han, Heon-Seok Hong, Jin-Tae Lee, Hak-Kyo Song, Ki-Duk Choi, Joong-Kook Exp Mol Med Article Calcium mobilization is necessary for cell movement during embryonic development, lymphocyte synapse formation, wound healing, and cancer cell metastasis. Depletion of calcium in the lumen of the endoplasmic reticulum using inositol triphosphate (IP3) or thapsigargin (TG) is known to induce oligomerization and cytoskeleton-mediated translocation of stromal interaction molecule 1 (STIM1) to the plasma membrane, where it interacts with the calcium release-activated calcium channel Orai1 to mediate calcium influx; this process is referred to as store-operated calcium entry (SOCE). Furthermore, aberrant STIM1 or SOCE regulation is associated with cancer cell motility and metastasis. The p21-activated kinases (PAKs), which are downstream effectors of GTPases, reportedly regulate cytoskeletal organization, protrusive activity, and cell migration. Although cytoskeletal remodeling apparently contributes to calcium mobilization via SOCE, and vice versa, the mechanisms by which they regulate each other remain unclear. In this study, we aimed to characterize whether PAK1 modulates calcium mobilization and STIM1 localization. Our data demonstrate that PAK1 interacts with STIM1 in vitro and that this interaction was enhanced by treatment with a nascent adhesion inducer, such as phorbol 12,13-dibutyrate (PDBu). Under basal conditions, both proteins appeared to primarily colocalize in the cytosol, whereas treatment with PDBu induced their colocalization to vinculin-positive peripheral adhesions. Downregulation of PAK1 activity via chemical inhibitors or by PAK1 shDNA expression impaired STIM1-mediated calcium mobilization via SOCE. Based on these findings, we propose that PAK1 interacts with STIM1 to regulate calcium mobilization and the formation of cellular adhesions. Nature Publishing Group UK 2018-05-21 /pmc/articles/PMC5960643/ /pubmed/29780159 http://dx.doi.org/10.1038/s12276-018-0093-2 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License, which permits any non-commercial use, sharing, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, and provide a link to the Creative Commons license. You do not have permission under this license to share adapted material derived from this article or parts of it. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, http://creativecommons.org/licenses/by-nc-nd/4.0/.
spellingShingle Article
Jeon, In-Sook
Kim, Hye-Ryun
Shin, Eun-Young
Kim, Eung-Gook
Han, Heon-Seok
Hong, Jin-Tae
Lee, Hak-Kyo
Song, Ki-Duk
Choi, Joong-Kook
Modulation of store-operated calcium entry and nascent adhesion by p21-activated kinase 1
title Modulation of store-operated calcium entry and nascent adhesion by p21-activated kinase 1
title_full Modulation of store-operated calcium entry and nascent adhesion by p21-activated kinase 1
title_fullStr Modulation of store-operated calcium entry and nascent adhesion by p21-activated kinase 1
title_full_unstemmed Modulation of store-operated calcium entry and nascent adhesion by p21-activated kinase 1
title_short Modulation of store-operated calcium entry and nascent adhesion by p21-activated kinase 1
title_sort modulation of store-operated calcium entry and nascent adhesion by p21-activated kinase 1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5960643/
https://www.ncbi.nlm.nih.gov/pubmed/29780159
http://dx.doi.org/10.1038/s12276-018-0093-2
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