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A Role for P21-Activated Kinase in Endothelial Cell Migration
The serine/threonine p21-activated kinase (PAK) is an effector for Rac and Cdc42, but its role in regulating cytoskeletal organization has been controversial. To address this issue, we investigated the role of PAK in migration of microvascular endothelial cells. We found that a dominant negative (DN...
Autores principales: | , , , , |
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Formato: | Texto |
Lenguaje: | English |
Publicado: |
The Rockefeller University Press
1999
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2156168/ https://www.ncbi.nlm.nih.gov/pubmed/10562284 |
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author | Kiosses, William B. Daniels, R. Hugh Otey, Carol Bokoch, Gary M. Schwartz, Martin Alexander |
author_facet | Kiosses, William B. Daniels, R. Hugh Otey, Carol Bokoch, Gary M. Schwartz, Martin Alexander |
author_sort | Kiosses, William B. |
collection | PubMed |
description | The serine/threonine p21-activated kinase (PAK) is an effector for Rac and Cdc42, but its role in regulating cytoskeletal organization has been controversial. To address this issue, we investigated the role of PAK in migration of microvascular endothelial cells. We found that a dominant negative (DN) mutant of PAK significantly inhibited cell migration and in-creased stress fibers and focal adhesions. The DN effect mapped to the most NH(2)-terminal proline-rich SH3-binding sequence. Observation of a green fluorescent protein-tagged α-actinin construct in living cells revealed that the DN construct had no effect on membrane ruffling, but dramatically inhibited stress fiber and focal contact motility and turnover. Constitutively active PAK inhibited migration equally well and also increased stress fibers and focal adhesions, but had a somewhat weaker effect on their dynamics. In contrast to their similar effects on motility, DN PAK decreased cell contractility, whereas active PAK increased contractility. Active PAK also increased myosin light chain (MLC) phosphorylation, as indicated by staining with an antibody to phosphorylated MLC, whereas DN PAK had little effect, despite the increase in actin stress fibers. These results demonstrate that although PAK is not required for extension of lamellipodia, it has substantial effects on cell adhesion and contraction. These data suggest a model in which PAK plays a role coordinating the formation of new adhesions at the leading edge with contraction and detachment at the trailing edge. |
format | Text |
id | pubmed-2156168 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 1999 |
publisher | The Rockefeller University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-21561682008-05-01 A Role for P21-Activated Kinase in Endothelial Cell Migration Kiosses, William B. Daniels, R. Hugh Otey, Carol Bokoch, Gary M. Schwartz, Martin Alexander J Cell Biol Original Article The serine/threonine p21-activated kinase (PAK) is an effector for Rac and Cdc42, but its role in regulating cytoskeletal organization has been controversial. To address this issue, we investigated the role of PAK in migration of microvascular endothelial cells. We found that a dominant negative (DN) mutant of PAK significantly inhibited cell migration and in-creased stress fibers and focal adhesions. The DN effect mapped to the most NH(2)-terminal proline-rich SH3-binding sequence. Observation of a green fluorescent protein-tagged α-actinin construct in living cells revealed that the DN construct had no effect on membrane ruffling, but dramatically inhibited stress fiber and focal contact motility and turnover. Constitutively active PAK inhibited migration equally well and also increased stress fibers and focal adhesions, but had a somewhat weaker effect on their dynamics. In contrast to their similar effects on motility, DN PAK decreased cell contractility, whereas active PAK increased contractility. Active PAK also increased myosin light chain (MLC) phosphorylation, as indicated by staining with an antibody to phosphorylated MLC, whereas DN PAK had little effect, despite the increase in actin stress fibers. These results demonstrate that although PAK is not required for extension of lamellipodia, it has substantial effects on cell adhesion and contraction. These data suggest a model in which PAK plays a role coordinating the formation of new adhesions at the leading edge with contraction and detachment at the trailing edge. The Rockefeller University Press 1999-11-15 /pmc/articles/PMC2156168/ /pubmed/10562284 Text en © 1999 The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/). |
spellingShingle | Original Article Kiosses, William B. Daniels, R. Hugh Otey, Carol Bokoch, Gary M. Schwartz, Martin Alexander A Role for P21-Activated Kinase in Endothelial Cell Migration |
title | A Role for P21-Activated Kinase in Endothelial Cell Migration |
title_full | A Role for P21-Activated Kinase in Endothelial Cell Migration |
title_fullStr | A Role for P21-Activated Kinase in Endothelial Cell Migration |
title_full_unstemmed | A Role for P21-Activated Kinase in Endothelial Cell Migration |
title_short | A Role for P21-Activated Kinase in Endothelial Cell Migration |
title_sort | role for p21-activated kinase in endothelial cell migration |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2156168/ https://www.ncbi.nlm.nih.gov/pubmed/10562284 |
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