Cargando…

Induced Arp2/3 Complex Depletion Increases FMNL2/3 Formin Expression and Filopodia Formation

The Arp2/3 complex generates branched actin filament networks operating in cell edge protrusion and vesicle trafficking. Here we employ a conditional knockout mouse model permitting tissue- or cell-type specific deletion of the murine Actr3 gene (encoding Arp3). A functional Actr3 gene appeared esse...

Descripción completa

Detalles Bibliográficos
Autores principales: Dimchev, Vanessa, Lahmann, Ines, Koestler, Stefan A., Kage, Frieda, Dimchev, Georgi, Steffen, Anika, Stradal, Theresia E. B., Vauti, Franz, Arnold, Hans-Henning, Rottner, Klemens
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7882613/
https://www.ncbi.nlm.nih.gov/pubmed/33598464
http://dx.doi.org/10.3389/fcell.2021.634708
_version_ 1783651086622523392
author Dimchev, Vanessa
Lahmann, Ines
Koestler, Stefan A.
Kage, Frieda
Dimchev, Georgi
Steffen, Anika
Stradal, Theresia E. B.
Vauti, Franz
Arnold, Hans-Henning
Rottner, Klemens
author_facet Dimchev, Vanessa
Lahmann, Ines
Koestler, Stefan A.
Kage, Frieda
Dimchev, Georgi
Steffen, Anika
Stradal, Theresia E. B.
Vauti, Franz
Arnold, Hans-Henning
Rottner, Klemens
author_sort Dimchev, Vanessa
collection PubMed
description The Arp2/3 complex generates branched actin filament networks operating in cell edge protrusion and vesicle trafficking. Here we employ a conditional knockout mouse model permitting tissue- or cell-type specific deletion of the murine Actr3 gene (encoding Arp3). A functional Actr3 gene appeared essential for fibroblast viability and growth. Thus, we developed cell lines for exploring the consequences of acute, tamoxifen-induced Actr3 deletion causing near-complete loss of functional Arp2/3 complex expression as well as abolished lamellipodia formation and membrane ruffling, as expected. Interestingly, Arp3-depleted cells displayed enhanced rather than reduced cell spreading, employing numerous filopodia, and showed little defects in the rates of random cell migration. However, both exploration of new space by individual cells and collective migration were clearly compromised by the incapability to efficiently maintain directionality of migration, while the principal ability to chemotax was only moderately affected. Examination of actin remodeling at the cell periphery revealed reduced actin turnover rates in Arp2/3-deficient cells, clearly deviating from previous sequestration approaches. Most surprisingly, induced removal of Arp2/3 complexes reproducibly increased FMNL formin expression, which correlated with the explosive induction of filopodia formation. Our results thus highlight both direct and indirect effects of acute Arp2/3 complex removal on actin cytoskeleton regulation.
format Online
Article
Text
id pubmed-7882613
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-78826132021-02-16 Induced Arp2/3 Complex Depletion Increases FMNL2/3 Formin Expression and Filopodia Formation Dimchev, Vanessa Lahmann, Ines Koestler, Stefan A. Kage, Frieda Dimchev, Georgi Steffen, Anika Stradal, Theresia E. B. Vauti, Franz Arnold, Hans-Henning Rottner, Klemens Front Cell Dev Biol Cell and Developmental Biology The Arp2/3 complex generates branched actin filament networks operating in cell edge protrusion and vesicle trafficking. Here we employ a conditional knockout mouse model permitting tissue- or cell-type specific deletion of the murine Actr3 gene (encoding Arp3). A functional Actr3 gene appeared essential for fibroblast viability and growth. Thus, we developed cell lines for exploring the consequences of acute, tamoxifen-induced Actr3 deletion causing near-complete loss of functional Arp2/3 complex expression as well as abolished lamellipodia formation and membrane ruffling, as expected. Interestingly, Arp3-depleted cells displayed enhanced rather than reduced cell spreading, employing numerous filopodia, and showed little defects in the rates of random cell migration. However, both exploration of new space by individual cells and collective migration were clearly compromised by the incapability to efficiently maintain directionality of migration, while the principal ability to chemotax was only moderately affected. Examination of actin remodeling at the cell periphery revealed reduced actin turnover rates in Arp2/3-deficient cells, clearly deviating from previous sequestration approaches. Most surprisingly, induced removal of Arp2/3 complexes reproducibly increased FMNL formin expression, which correlated with the explosive induction of filopodia formation. Our results thus highlight both direct and indirect effects of acute Arp2/3 complex removal on actin cytoskeleton regulation. Frontiers Media S.A. 2021-02-01 /pmc/articles/PMC7882613/ /pubmed/33598464 http://dx.doi.org/10.3389/fcell.2021.634708 Text en Copyright © 2021 Dimchev, Lahmann, Koestler, Kage, Dimchev, Steffen, Stradal, Vauti, Arnold and Rottner. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Dimchev, Vanessa
Lahmann, Ines
Koestler, Stefan A.
Kage, Frieda
Dimchev, Georgi
Steffen, Anika
Stradal, Theresia E. B.
Vauti, Franz
Arnold, Hans-Henning
Rottner, Klemens
Induced Arp2/3 Complex Depletion Increases FMNL2/3 Formin Expression and Filopodia Formation
title Induced Arp2/3 Complex Depletion Increases FMNL2/3 Formin Expression and Filopodia Formation
title_full Induced Arp2/3 Complex Depletion Increases FMNL2/3 Formin Expression and Filopodia Formation
title_fullStr Induced Arp2/3 Complex Depletion Increases FMNL2/3 Formin Expression and Filopodia Formation
title_full_unstemmed Induced Arp2/3 Complex Depletion Increases FMNL2/3 Formin Expression and Filopodia Formation
title_short Induced Arp2/3 Complex Depletion Increases FMNL2/3 Formin Expression and Filopodia Formation
title_sort induced arp2/3 complex depletion increases fmnl2/3 formin expression and filopodia formation
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7882613/
https://www.ncbi.nlm.nih.gov/pubmed/33598464
http://dx.doi.org/10.3389/fcell.2021.634708
work_keys_str_mv AT dimchevvanessa inducedarp23complexdepletionincreasesfmnl23forminexpressionandfilopodiaformation
AT lahmannines inducedarp23complexdepletionincreasesfmnl23forminexpressionandfilopodiaformation
AT koestlerstefana inducedarp23complexdepletionincreasesfmnl23forminexpressionandfilopodiaformation
AT kagefrieda inducedarp23complexdepletionincreasesfmnl23forminexpressionandfilopodiaformation
AT dimchevgeorgi inducedarp23complexdepletionincreasesfmnl23forminexpressionandfilopodiaformation
AT steffenanika inducedarp23complexdepletionincreasesfmnl23forminexpressionandfilopodiaformation
AT stradaltheresiaeb inducedarp23complexdepletionincreasesfmnl23forminexpressionandfilopodiaformation
AT vautifranz inducedarp23complexdepletionincreasesfmnl23forminexpressionandfilopodiaformation
AT arnoldhanshenning inducedarp23complexdepletionincreasesfmnl23forminexpressionandfilopodiaformation
AT rottnerklemens inducedarp23complexdepletionincreasesfmnl23forminexpressionandfilopodiaformation