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Myosin 1E localizes to actin polymerization sites in lamellipodia, affecting actin dynamics and adhesion formation

Because the actin network in active lamellipodia is continuously assembling at the edge, moving inward and disassembling, there is a question as to how actin-binding proteins and other components are transported to the leading edge and how nascent adhesions are stabilized. Active transport could pla...

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Autores principales: Gupta, Prabuddha, Gauthier, Nils C., Cheng-Han, Yu, Zuanning, Yuan, Pontes, Bruno, Ohmstede, Malte, Martin, René, Knölker, Hans-Joachim, Döbereiner, Hans-Günther, Krendel, Mira, Sheetz, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3863413/
https://www.ncbi.nlm.nih.gov/pubmed/24337113
http://dx.doi.org/10.1242/bio.20135827
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author Gupta, Prabuddha
Gauthier, Nils C.
Cheng-Han, Yu
Zuanning, Yuan
Pontes, Bruno
Ohmstede, Malte
Martin, René
Knölker, Hans-Joachim
Döbereiner, Hans-Günther
Krendel, Mira
Sheetz, Michael
author_facet Gupta, Prabuddha
Gauthier, Nils C.
Cheng-Han, Yu
Zuanning, Yuan
Pontes, Bruno
Ohmstede, Malte
Martin, René
Knölker, Hans-Joachim
Döbereiner, Hans-Günther
Krendel, Mira
Sheetz, Michael
author_sort Gupta, Prabuddha
collection PubMed
description Because the actin network in active lamellipodia is continuously assembling at the edge, moving inward and disassembling, there is a question as to how actin-binding proteins and other components are transported to the leading edge and how nascent adhesions are stabilized. Active transport could play a significant role in these functions but the components involved are unknown. We show here that Myosin 1E (a long tailed Myosin 1 isoform) rapidly moves to the tips of active lamellipodia and to actin-rich early adhesions, unlike Myosin 1G, 1B or 1C (short tailed isoforms). Myosin 1E co-localizes with CARMIL, FHOD1, Arp3 and β3-integrin in those early adhesions. But these structures precede stable paxillin-rich adhesions. Myosin 1E movement depends upon actin-binding domains and the presence of an SH3 oligomerization domain. Overexpression of a Myosin 1E deletion mutant without the extreme C-terminal interacting (SH3) domain (Myosin 1EΔSH3) increases edge fluctuations and decreases stable adhesion lifetimes. In contrast, overexpression of Myosin 1E full tail domain (TH1+TH2+TH3/SH3) decreases edge fluctuation. In Myosin 1E knockdown cells, and more prominently in cells treated with Myosin 1 inhibitor, cell–matrix adhesions are also short-lived and fail to mature. We suggest that, by moving to actin polymerization sites and early adhesion sites in active lamellipodia, Myosin 1E might play important roles in transporting not only important polymerizing proteins but also proteins involved in adhesion stabilization.
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spelling pubmed-38634132013-12-16 Myosin 1E localizes to actin polymerization sites in lamellipodia, affecting actin dynamics and adhesion formation Gupta, Prabuddha Gauthier, Nils C. Cheng-Han, Yu Zuanning, Yuan Pontes, Bruno Ohmstede, Malte Martin, René Knölker, Hans-Joachim Döbereiner, Hans-Günther Krendel, Mira Sheetz, Michael Biol Open Research Article Because the actin network in active lamellipodia is continuously assembling at the edge, moving inward and disassembling, there is a question as to how actin-binding proteins and other components are transported to the leading edge and how nascent adhesions are stabilized. Active transport could play a significant role in these functions but the components involved are unknown. We show here that Myosin 1E (a long tailed Myosin 1 isoform) rapidly moves to the tips of active lamellipodia and to actin-rich early adhesions, unlike Myosin 1G, 1B or 1C (short tailed isoforms). Myosin 1E co-localizes with CARMIL, FHOD1, Arp3 and β3-integrin in those early adhesions. But these structures precede stable paxillin-rich adhesions. Myosin 1E movement depends upon actin-binding domains and the presence of an SH3 oligomerization domain. Overexpression of a Myosin 1E deletion mutant without the extreme C-terminal interacting (SH3) domain (Myosin 1EΔSH3) increases edge fluctuations and decreases stable adhesion lifetimes. In contrast, overexpression of Myosin 1E full tail domain (TH1+TH2+TH3/SH3) decreases edge fluctuation. In Myosin 1E knockdown cells, and more prominently in cells treated with Myosin 1 inhibitor, cell–matrix adhesions are also short-lived and fail to mature. We suggest that, by moving to actin polymerization sites and early adhesion sites in active lamellipodia, Myosin 1E might play important roles in transporting not only important polymerizing proteins but also proteins involved in adhesion stabilization. The Company of Biologists 2013-10-16 /pmc/articles/PMC3863413/ /pubmed/24337113 http://dx.doi.org/10.1242/bio.20135827 Text en © 2013. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Gupta, Prabuddha
Gauthier, Nils C.
Cheng-Han, Yu
Zuanning, Yuan
Pontes, Bruno
Ohmstede, Malte
Martin, René
Knölker, Hans-Joachim
Döbereiner, Hans-Günther
Krendel, Mira
Sheetz, Michael
Myosin 1E localizes to actin polymerization sites in lamellipodia, affecting actin dynamics and adhesion formation
title Myosin 1E localizes to actin polymerization sites in lamellipodia, affecting actin dynamics and adhesion formation
title_full Myosin 1E localizes to actin polymerization sites in lamellipodia, affecting actin dynamics and adhesion formation
title_fullStr Myosin 1E localizes to actin polymerization sites in lamellipodia, affecting actin dynamics and adhesion formation
title_full_unstemmed Myosin 1E localizes to actin polymerization sites in lamellipodia, affecting actin dynamics and adhesion formation
title_short Myosin 1E localizes to actin polymerization sites in lamellipodia, affecting actin dynamics and adhesion formation
title_sort myosin 1e localizes to actin polymerization sites in lamellipodia, affecting actin dynamics and adhesion formation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3863413/
https://www.ncbi.nlm.nih.gov/pubmed/24337113
http://dx.doi.org/10.1242/bio.20135827
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