Cargando…

Extracellular vesicles stimulate smooth muscle cell migration by presenting collagen VI

The extracellular matrix (ECM) supports blood vessel architecture and functionality and undergoes active remodelling during vascular repair and atherogenesis. Vascular smooth muscle cells (VSMCs) are essential for vessel repair and, via their secretome, are able to invade from the vessel media into...

Descripción completa

Detalles Bibliográficos
Autores principales: Kapustin, Alexander, Tsakali, Sofia Serena, Whitehead, Meredith, Chennell, George, Wu, Meng-Ying, Molenaar, Chris, Kutikhin, Anton, Bogdanov, Leo, Sinitsky, Maxim, Rubina, Kseniya, Clayton, Aled, Verweij, Frederik J, Pegtel, Dirk Michiel, Zingaro, Simona, Lobov, Arseniy, Zainullina, Bozhana, Owen, Dylan, Parsons, Maddy, Cheney, Richard E., Warren, Derek, Humphries, Martin James, Iskratsch, Thomas, Holt, Mark, Shanahan, Catherine M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10462164/
https://www.ncbi.nlm.nih.gov/pubmed/37645762
http://dx.doi.org/10.1101/2023.08.17.551257
_version_ 1785097999973613568
author Kapustin, Alexander
Tsakali, Sofia Serena
Whitehead, Meredith
Chennell, George
Wu, Meng-Ying
Molenaar, Chris
Kutikhin, Anton
Bogdanov, Leo
Sinitsky, Maxim
Rubina, Kseniya
Clayton, Aled
Verweij, Frederik J
Pegtel, Dirk Michiel
Zingaro, Simona
Lobov, Arseniy
Zainullina, Bozhana
Owen, Dylan
Parsons, Maddy
Cheney, Richard E.
Warren, Derek
Humphries, Martin James
Iskratsch, Thomas
Holt, Mark
Shanahan, Catherine M
author_facet Kapustin, Alexander
Tsakali, Sofia Serena
Whitehead, Meredith
Chennell, George
Wu, Meng-Ying
Molenaar, Chris
Kutikhin, Anton
Bogdanov, Leo
Sinitsky, Maxim
Rubina, Kseniya
Clayton, Aled
Verweij, Frederik J
Pegtel, Dirk Michiel
Zingaro, Simona
Lobov, Arseniy
Zainullina, Bozhana
Owen, Dylan
Parsons, Maddy
Cheney, Richard E.
Warren, Derek
Humphries, Martin James
Iskratsch, Thomas
Holt, Mark
Shanahan, Catherine M
author_sort Kapustin, Alexander
collection PubMed
description The extracellular matrix (ECM) supports blood vessel architecture and functionality and undergoes active remodelling during vascular repair and atherogenesis. Vascular smooth muscle cells (VSMCs) are essential for vessel repair and, via their secretome, are able to invade from the vessel media into the intima to mediate ECM remodelling. Accumulation of fibronectin (FN) is a hallmark of early vascular repair and atherosclerosis and here we show that FN stimulates VSMCs to secrete small extracellular vesicles (sEVs) by activating the β1 integrin/FAK/Src pathway as well as Arp2/3-dependent branching of the actin cytoskeleton. Spatially, sEV were secreted via filopodia-like cellular protrusions at the leading edge of migrating cells. We found that sEVs are trapped by the ECM in vitro and colocalise with FN in symptomatic atherosclerotic plaques in vivo. Functionally, ECM-trapped sEVs induced the formation of focal adhesions (FA) with enhanced pulling forces at the cellular periphery. Proteomic and GO pathway analysis revealed that VSMC-derived sEVs display a cell adhesion signature and are specifically enriched with collagen VI. In vitro assays identified collagen VI as playing the key role in cell adhesion and invasion. Taken together our data suggests that the accumulation of FN is a key early event in vessel repair acting to promote secretion of collage VI enriched sEVs by VSMCs. These sEVs stimulate migration and invasion by triggering peripheral focal adhesion formation and actomyosin contraction to exert sufficient traction forces to enable VSMC movement within the complex vascular ECM network.
format Online
Article
Text
id pubmed-10462164
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Cold Spring Harbor Laboratory
record_format MEDLINE/PubMed
spelling pubmed-104621642023-08-29 Extracellular vesicles stimulate smooth muscle cell migration by presenting collagen VI Kapustin, Alexander Tsakali, Sofia Serena Whitehead, Meredith Chennell, George Wu, Meng-Ying Molenaar, Chris Kutikhin, Anton Bogdanov, Leo Sinitsky, Maxim Rubina, Kseniya Clayton, Aled Verweij, Frederik J Pegtel, Dirk Michiel Zingaro, Simona Lobov, Arseniy Zainullina, Bozhana Owen, Dylan Parsons, Maddy Cheney, Richard E. Warren, Derek Humphries, Martin James Iskratsch, Thomas Holt, Mark Shanahan, Catherine M bioRxiv Article The extracellular matrix (ECM) supports blood vessel architecture and functionality and undergoes active remodelling during vascular repair and atherogenesis. Vascular smooth muscle cells (VSMCs) are essential for vessel repair and, via their secretome, are able to invade from the vessel media into the intima to mediate ECM remodelling. Accumulation of fibronectin (FN) is a hallmark of early vascular repair and atherosclerosis and here we show that FN stimulates VSMCs to secrete small extracellular vesicles (sEVs) by activating the β1 integrin/FAK/Src pathway as well as Arp2/3-dependent branching of the actin cytoskeleton. Spatially, sEV were secreted via filopodia-like cellular protrusions at the leading edge of migrating cells. We found that sEVs are trapped by the ECM in vitro and colocalise with FN in symptomatic atherosclerotic plaques in vivo. Functionally, ECM-trapped sEVs induced the formation of focal adhesions (FA) with enhanced pulling forces at the cellular periphery. Proteomic and GO pathway analysis revealed that VSMC-derived sEVs display a cell adhesion signature and are specifically enriched with collagen VI. In vitro assays identified collagen VI as playing the key role in cell adhesion and invasion. Taken together our data suggests that the accumulation of FN is a key early event in vessel repair acting to promote secretion of collage VI enriched sEVs by VSMCs. These sEVs stimulate migration and invasion by triggering peripheral focal adhesion formation and actomyosin contraction to exert sufficient traction forces to enable VSMC movement within the complex vascular ECM network. Cold Spring Harbor Laboratory 2023-08-22 /pmc/articles/PMC10462164/ /pubmed/37645762 http://dx.doi.org/10.1101/2023.08.17.551257 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Kapustin, Alexander
Tsakali, Sofia Serena
Whitehead, Meredith
Chennell, George
Wu, Meng-Ying
Molenaar, Chris
Kutikhin, Anton
Bogdanov, Leo
Sinitsky, Maxim
Rubina, Kseniya
Clayton, Aled
Verweij, Frederik J
Pegtel, Dirk Michiel
Zingaro, Simona
Lobov, Arseniy
Zainullina, Bozhana
Owen, Dylan
Parsons, Maddy
Cheney, Richard E.
Warren, Derek
Humphries, Martin James
Iskratsch, Thomas
Holt, Mark
Shanahan, Catherine M
Extracellular vesicles stimulate smooth muscle cell migration by presenting collagen VI
title Extracellular vesicles stimulate smooth muscle cell migration by presenting collagen VI
title_full Extracellular vesicles stimulate smooth muscle cell migration by presenting collagen VI
title_fullStr Extracellular vesicles stimulate smooth muscle cell migration by presenting collagen VI
title_full_unstemmed Extracellular vesicles stimulate smooth muscle cell migration by presenting collagen VI
title_short Extracellular vesicles stimulate smooth muscle cell migration by presenting collagen VI
title_sort extracellular vesicles stimulate smooth muscle cell migration by presenting collagen vi
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10462164/
https://www.ncbi.nlm.nih.gov/pubmed/37645762
http://dx.doi.org/10.1101/2023.08.17.551257
work_keys_str_mv AT kapustinalexander extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT tsakalisofiaserena extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT whiteheadmeredith extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT chennellgeorge extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT wumengying extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT molenaarchris extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT kutikhinanton extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT bogdanovleo extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT sinitskymaxim extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT rubinakseniya extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT claytonaled extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT verweijfrederikj extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT pegteldirkmichiel extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT zingarosimona extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT lobovarseniy extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT zainullinabozhana extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT owendylan extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT parsonsmaddy extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT cheneyricharde extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT warrenderek extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT humphriesmartinjames extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT iskratschthomas extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT holtmark extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi
AT shanahancatherinem extracellularvesiclesstimulatesmoothmusclecellmigrationbypresentingcollagenvi