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ARP3 Controls the Podocyte Architecture at the Kidney Filtration Barrier

Podocytes, highly specialized epithelial cells, build the outer part of the kidney filtration barrier and withstand high mechanical forces through a complex network of cellular protrusions. Here, we show that Arp2/3-dependent actin polymerization controls actomyosin contractility and focal adhesion...

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Autores principales: Schell, Christoph, Sabass, Benedikt, Helmstaedter, Martin, Geist, Felix, Abed, Ahmed, Yasuda-Yamahara, Mako, Sigle, August, Maier, Jasmin I., Grahammer, Florian, Siegerist, Florian, Artelt, Nadine, Endlich, Nicole, Kerjaschki, Dontscho, Arnold, Hans-Henning, Dengjel, Jörn, Rogg, Manuel, Huber, Tobias B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6302147/
https://www.ncbi.nlm.nih.gov/pubmed/30503751
http://dx.doi.org/10.1016/j.devcel.2018.11.011
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author Schell, Christoph
Sabass, Benedikt
Helmstaedter, Martin
Geist, Felix
Abed, Ahmed
Yasuda-Yamahara, Mako
Sigle, August
Maier, Jasmin I.
Grahammer, Florian
Siegerist, Florian
Artelt, Nadine
Endlich, Nicole
Kerjaschki, Dontscho
Arnold, Hans-Henning
Dengjel, Jörn
Rogg, Manuel
Huber, Tobias B.
author_facet Schell, Christoph
Sabass, Benedikt
Helmstaedter, Martin
Geist, Felix
Abed, Ahmed
Yasuda-Yamahara, Mako
Sigle, August
Maier, Jasmin I.
Grahammer, Florian
Siegerist, Florian
Artelt, Nadine
Endlich, Nicole
Kerjaschki, Dontscho
Arnold, Hans-Henning
Dengjel, Jörn
Rogg, Manuel
Huber, Tobias B.
author_sort Schell, Christoph
collection PubMed
description Podocytes, highly specialized epithelial cells, build the outer part of the kidney filtration barrier and withstand high mechanical forces through a complex network of cellular protrusions. Here, we show that Arp2/3-dependent actin polymerization controls actomyosin contractility and focal adhesion maturation of podocyte protrusions and thereby regulates formation, maintenance, and capacity to adapt to mechanical requirements of the filtration barrier. We find that N-WASP-Arp2/3 define the development of complex arborized podocyte protrusions in vitro and in vivo. Loss of dendritic actin networks results in a pronounced activation of the actomyosin cytoskeleton and the generation of over-maturated but less efficient adhesion, leading to detachment of podocytes. Our data provide a model to explain podocyte protrusion morphology and their mechanical stability based on a tripartite relationship between actin polymerization, contractility, and adhesion.
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spelling pubmed-63021472018-12-27 ARP3 Controls the Podocyte Architecture at the Kidney Filtration Barrier Schell, Christoph Sabass, Benedikt Helmstaedter, Martin Geist, Felix Abed, Ahmed Yasuda-Yamahara, Mako Sigle, August Maier, Jasmin I. Grahammer, Florian Siegerist, Florian Artelt, Nadine Endlich, Nicole Kerjaschki, Dontscho Arnold, Hans-Henning Dengjel, Jörn Rogg, Manuel Huber, Tobias B. Dev Cell Article Podocytes, highly specialized epithelial cells, build the outer part of the kidney filtration barrier and withstand high mechanical forces through a complex network of cellular protrusions. Here, we show that Arp2/3-dependent actin polymerization controls actomyosin contractility and focal adhesion maturation of podocyte protrusions and thereby regulates formation, maintenance, and capacity to adapt to mechanical requirements of the filtration barrier. We find that N-WASP-Arp2/3 define the development of complex arborized podocyte protrusions in vitro and in vivo. Loss of dendritic actin networks results in a pronounced activation of the actomyosin cytoskeleton and the generation of over-maturated but less efficient adhesion, leading to detachment of podocytes. Our data provide a model to explain podocyte protrusion morphology and their mechanical stability based on a tripartite relationship between actin polymerization, contractility, and adhesion. Cell Press 2018-12-17 /pmc/articles/PMC6302147/ /pubmed/30503751 http://dx.doi.org/10.1016/j.devcel.2018.11.011 Text en © 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Schell, Christoph
Sabass, Benedikt
Helmstaedter, Martin
Geist, Felix
Abed, Ahmed
Yasuda-Yamahara, Mako
Sigle, August
Maier, Jasmin I.
Grahammer, Florian
Siegerist, Florian
Artelt, Nadine
Endlich, Nicole
Kerjaschki, Dontscho
Arnold, Hans-Henning
Dengjel, Jörn
Rogg, Manuel
Huber, Tobias B.
ARP3 Controls the Podocyte Architecture at the Kidney Filtration Barrier
title ARP3 Controls the Podocyte Architecture at the Kidney Filtration Barrier
title_full ARP3 Controls the Podocyte Architecture at the Kidney Filtration Barrier
title_fullStr ARP3 Controls the Podocyte Architecture at the Kidney Filtration Barrier
title_full_unstemmed ARP3 Controls the Podocyte Architecture at the Kidney Filtration Barrier
title_short ARP3 Controls the Podocyte Architecture at the Kidney Filtration Barrier
title_sort arp3 controls the podocyte architecture at the kidney filtration barrier
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6302147/
https://www.ncbi.nlm.nih.gov/pubmed/30503751
http://dx.doi.org/10.1016/j.devcel.2018.11.011
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