Cargando…

Studies on the morphology and spreading of human endothelial cells define key inter- and intramolecular interactions for talin1

Talin binds to and activates integrins and is thought to couple them to cytoskeletal actin. However, functional studies on talin have been restricted by the fact that most cells express two talin isoforms. Here we show that human umbilical vein endothelial cells (HUVEC) express only talin1, and that...

Descripción completa

Detalles Bibliográficos
Autores principales: Kopp, Petra M., Bate, Neil, Hansen, Tania M., Brindle, Nicholas P.J., Praekelt, Uta, Debrand, Emmanuel, Coleman, Stacey, Mazzeo, Daniela, Goult, Benjamin T., Gingras, Alexandre R., Pritchard, Catrin A., Critchley, David R., Monkley, Susan J.
Formato: Texto
Lenguaje:English
Publicado: Elsevier 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2958305/
https://www.ncbi.nlm.nih.gov/pubmed/20605055
http://dx.doi.org/10.1016/j.ejcb.2010.05.003
_version_ 1782188313366495232
author Kopp, Petra M.
Bate, Neil
Hansen, Tania M.
Brindle, Nicholas P.J.
Praekelt, Uta
Debrand, Emmanuel
Coleman, Stacey
Mazzeo, Daniela
Goult, Benjamin T.
Gingras, Alexandre R.
Pritchard, Catrin A.
Critchley, David R.
Monkley, Susan J.
author_facet Kopp, Petra M.
Bate, Neil
Hansen, Tania M.
Brindle, Nicholas P.J.
Praekelt, Uta
Debrand, Emmanuel
Coleman, Stacey
Mazzeo, Daniela
Goult, Benjamin T.
Gingras, Alexandre R.
Pritchard, Catrin A.
Critchley, David R.
Monkley, Susan J.
author_sort Kopp, Petra M.
collection PubMed
description Talin binds to and activates integrins and is thought to couple them to cytoskeletal actin. However, functional studies on talin have been restricted by the fact that most cells express two talin isoforms. Here we show that human umbilical vein endothelial cells (HUVEC) express only talin1, and that talin1 knockdown inhibited focal adhesion (FA) assembly preventing the cells from maintaining a spread morphology, a phenotype that was rescued by GFP-mouse talin1. Thus HUVEC offer an ideal model system in which to conduct talin structure/function studies. Talin contains an N-terminal FERM domain (comprised of F1, F2 and F3 domains) and a C-terminal flexible rod. The F3 FERM domain binds β-integrin tails, and mutations in F3 that inhibited integrin binding (W359A) or activation (L325R) severely compromised the ability of GFP-talin1 to rescue the talin1 knockdown phenotype despite the presence of a second integrin-binding site in the talin rod. The talin rod contains several actin-binding sites (ABS), and mutations in the C-terminal ABS that reduced actin-binding impaired talin1 function, whereas those that increased binding resulted in more stable FAs. The results show that both the N-terminal integrin and C-terminal actin-binding functions of talin are essential to cell spreading and FA assembly. Finally, mutations that relieve talin auto-inhibition resulted in the rapid and excessive production of FA, highlighting the importance of talin regulation within the cell.
format Text
id pubmed-2958305
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-29583052010-11-08 Studies on the morphology and spreading of human endothelial cells define key inter- and intramolecular interactions for talin1 Kopp, Petra M. Bate, Neil Hansen, Tania M. Brindle, Nicholas P.J. Praekelt, Uta Debrand, Emmanuel Coleman, Stacey Mazzeo, Daniela Goult, Benjamin T. Gingras, Alexandre R. Pritchard, Catrin A. Critchley, David R. Monkley, Susan J. Eur J Cell Biol Article Talin binds to and activates integrins and is thought to couple them to cytoskeletal actin. However, functional studies on talin have been restricted by the fact that most cells express two talin isoforms. Here we show that human umbilical vein endothelial cells (HUVEC) express only talin1, and that talin1 knockdown inhibited focal adhesion (FA) assembly preventing the cells from maintaining a spread morphology, a phenotype that was rescued by GFP-mouse talin1. Thus HUVEC offer an ideal model system in which to conduct talin structure/function studies. Talin contains an N-terminal FERM domain (comprised of F1, F2 and F3 domains) and a C-terminal flexible rod. The F3 FERM domain binds β-integrin tails, and mutations in F3 that inhibited integrin binding (W359A) or activation (L325R) severely compromised the ability of GFP-talin1 to rescue the talin1 knockdown phenotype despite the presence of a second integrin-binding site in the talin rod. The talin rod contains several actin-binding sites (ABS), and mutations in the C-terminal ABS that reduced actin-binding impaired talin1 function, whereas those that increased binding resulted in more stable FAs. The results show that both the N-terminal integrin and C-terminal actin-binding functions of talin are essential to cell spreading and FA assembly. Finally, mutations that relieve talin auto-inhibition resulted in the rapid and excessive production of FA, highlighting the importance of talin regulation within the cell. Elsevier 2010-09 /pmc/articles/PMC2958305/ /pubmed/20605055 http://dx.doi.org/10.1016/j.ejcb.2010.05.003 Text en © 2010 Elsevier GmbH. https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Article
Kopp, Petra M.
Bate, Neil
Hansen, Tania M.
Brindle, Nicholas P.J.
Praekelt, Uta
Debrand, Emmanuel
Coleman, Stacey
Mazzeo, Daniela
Goult, Benjamin T.
Gingras, Alexandre R.
Pritchard, Catrin A.
Critchley, David R.
Monkley, Susan J.
Studies on the morphology and spreading of human endothelial cells define key inter- and intramolecular interactions for talin1
title Studies on the morphology and spreading of human endothelial cells define key inter- and intramolecular interactions for talin1
title_full Studies on the morphology and spreading of human endothelial cells define key inter- and intramolecular interactions for talin1
title_fullStr Studies on the morphology and spreading of human endothelial cells define key inter- and intramolecular interactions for talin1
title_full_unstemmed Studies on the morphology and spreading of human endothelial cells define key inter- and intramolecular interactions for talin1
title_short Studies on the morphology and spreading of human endothelial cells define key inter- and intramolecular interactions for talin1
title_sort studies on the morphology and spreading of human endothelial cells define key inter- and intramolecular interactions for talin1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2958305/
https://www.ncbi.nlm.nih.gov/pubmed/20605055
http://dx.doi.org/10.1016/j.ejcb.2010.05.003
work_keys_str_mv AT kopppetram studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT bateneil studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT hansentaniam studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT brindlenicholaspj studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT praekeltuta studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT debrandemmanuel studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT colemanstacey studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT mazzeodaniela studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT goultbenjamint studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT gingrasalexandrer studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT pritchardcatrina studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT critchleydavidr studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1
AT monkleysusanj studiesonthemorphologyandspreadingofhumanendothelialcellsdefinekeyinterandintramolecularinteractionsfortalin1