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Arp2/3 complex interactions and actin network turnover in lamellipodia

Cell migration is initiated by lamellipodia—membrane-enclosed sheets of cytoplasm containing densely packed actin filament networks. Although the molecular details of network turnover remain obscure, recent work points towards key roles in filament nucleation for Arp2/3 complex and its activator WAV...

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Autores principales: Lai, Frank PL, Szczodrak, Malgorzata, Block, Jennifer, Faix, Jan, Breitsprecher, Dennis, Mannherz, Hans G, Stradal, Theresia EB, Dunn, Graham A, Small, J Victor, Rottner, Klemens
Formato: Texto
Lenguaje:English
Publicado: Nature Publishing Group 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2265112/
https://www.ncbi.nlm.nih.gov/pubmed/18309290
http://dx.doi.org/10.1038/emboj.2008.34
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author Lai, Frank PL
Szczodrak, Malgorzata
Block, Jennifer
Faix, Jan
Breitsprecher, Dennis
Mannherz, Hans G
Stradal, Theresia EB
Dunn, Graham A
Small, J Victor
Rottner, Klemens
author_facet Lai, Frank PL
Szczodrak, Malgorzata
Block, Jennifer
Faix, Jan
Breitsprecher, Dennis
Mannherz, Hans G
Stradal, Theresia EB
Dunn, Graham A
Small, J Victor
Rottner, Klemens
author_sort Lai, Frank PL
collection PubMed
description Cell migration is initiated by lamellipodia—membrane-enclosed sheets of cytoplasm containing densely packed actin filament networks. Although the molecular details of network turnover remain obscure, recent work points towards key roles in filament nucleation for Arp2/3 complex and its activator WAVE complex. Here, we combine fluorescence recovery after photobleaching (FRAP) of different lamellipodial components with a new method of data analysis to shed light on the dynamics of actin assembly/disassembly. We show that Arp2/3 complex is incorporated into the network exclusively at the lamellipodium tip, like actin, at sites coincident with WAVE complex accumulation. Capping protein likewise showed a turnover similar to actin and Arp2/3 complex, but was confined to the tip. In contrast, cortactin—another prominent Arp2/3 complex regulator—and ADF/cofilin—previously implicated in driving both filament nucleation and disassembly—were rapidly exchanged throughout the lamellipodium. These results suggest that Arp2/3- and WAVE complex-driven actin filament nucleation at the lamellipodium tip is uncoupled from the activities of both cortactin and cofilin. Network turnover is additionally regulated by the spatially segregated activities of capping protein at the tip and cofilin throughout the mesh.
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spelling pubmed-22651122008-03-06 Arp2/3 complex interactions and actin network turnover in lamellipodia Lai, Frank PL Szczodrak, Malgorzata Block, Jennifer Faix, Jan Breitsprecher, Dennis Mannherz, Hans G Stradal, Theresia EB Dunn, Graham A Small, J Victor Rottner, Klemens EMBO J Article Cell migration is initiated by lamellipodia—membrane-enclosed sheets of cytoplasm containing densely packed actin filament networks. Although the molecular details of network turnover remain obscure, recent work points towards key roles in filament nucleation for Arp2/3 complex and its activator WAVE complex. Here, we combine fluorescence recovery after photobleaching (FRAP) of different lamellipodial components with a new method of data analysis to shed light on the dynamics of actin assembly/disassembly. We show that Arp2/3 complex is incorporated into the network exclusively at the lamellipodium tip, like actin, at sites coincident with WAVE complex accumulation. Capping protein likewise showed a turnover similar to actin and Arp2/3 complex, but was confined to the tip. In contrast, cortactin—another prominent Arp2/3 complex regulator—and ADF/cofilin—previously implicated in driving both filament nucleation and disassembly—were rapidly exchanged throughout the lamellipodium. These results suggest that Arp2/3- and WAVE complex-driven actin filament nucleation at the lamellipodium tip is uncoupled from the activities of both cortactin and cofilin. Network turnover is additionally regulated by the spatially segregated activities of capping protein at the tip and cofilin throughout the mesh. Nature Publishing Group 2008-04-09 2008-02-28 /pmc/articles/PMC2265112/ /pubmed/18309290 http://dx.doi.org/10.1038/emboj.2008.34 Text en Copyright © 2008, European Molecular Biology Organization http://creativecommons.org/licenses/by-nc-nd/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits distribution, and reproduction in any medium, provided the original author and source are credited. This license does not permit commercial exploitation or the creation of derivative works without specific permission.
spellingShingle Article
Lai, Frank PL
Szczodrak, Malgorzata
Block, Jennifer
Faix, Jan
Breitsprecher, Dennis
Mannherz, Hans G
Stradal, Theresia EB
Dunn, Graham A
Small, J Victor
Rottner, Klemens
Arp2/3 complex interactions and actin network turnover in lamellipodia
title Arp2/3 complex interactions and actin network turnover in lamellipodia
title_full Arp2/3 complex interactions and actin network turnover in lamellipodia
title_fullStr Arp2/3 complex interactions and actin network turnover in lamellipodia
title_full_unstemmed Arp2/3 complex interactions and actin network turnover in lamellipodia
title_short Arp2/3 complex interactions and actin network turnover in lamellipodia
title_sort arp2/3 complex interactions and actin network turnover in lamellipodia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2265112/
https://www.ncbi.nlm.nih.gov/pubmed/18309290
http://dx.doi.org/10.1038/emboj.2008.34
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