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Hem-1 Complexes Are Essential for Rac Activation, Actin Polymerization, and Myosin Regulation during Neutrophil Chemotaxis

Migrating cells need to make different actin assemblies at the cell's leading and trailing edges and to maintain physical separation of signals for these assemblies. This asymmetric control of activities represents one important form of cell polarity. There are significant gaps in our understan...

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Autores principales: Weiner, Orion D, Rentel, Maike C, Ott, Alex, Brown, Glenn E, Jedrychowski, Mark, Yaffe, Michael B, Gygi, Steven P, Cantley, Lewis C, Bourne, Henry R, Kirschner, Marc W
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1334198/
https://www.ncbi.nlm.nih.gov/pubmed/16417406
http://dx.doi.org/10.1371/journal.pbio.0040038
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author Weiner, Orion D
Rentel, Maike C
Ott, Alex
Brown, Glenn E
Jedrychowski, Mark
Yaffe, Michael B
Gygi, Steven P
Cantley, Lewis C
Bourne, Henry R
Kirschner, Marc W
author_facet Weiner, Orion D
Rentel, Maike C
Ott, Alex
Brown, Glenn E
Jedrychowski, Mark
Yaffe, Michael B
Gygi, Steven P
Cantley, Lewis C
Bourne, Henry R
Kirschner, Marc W
author_sort Weiner, Orion D
collection PubMed
description Migrating cells need to make different actin assemblies at the cell's leading and trailing edges and to maintain physical separation of signals for these assemblies. This asymmetric control of activities represents one important form of cell polarity. There are significant gaps in our understanding of the components involved in generating and maintaining polarity during chemotaxis. Here we characterize a family of complexes (which we term leading edge complexes), scaffolded by hematopoietic protein 1 (Hem-1), that organize the neutrophil's leading edge. The Wiskott-Aldrich syndrome protein family Verprolin-homologous protein (WAVE)2 complex, which mediates activation of actin polymerization by Rac, is only one member of this family. A subset of these leading edge complexes are biochemically separable from the WAVE2 complex and contain a diverse set of potential polarity-regulating proteins. RNA interference–mediated knockdown of Hem-1–containing complexes in neutrophil-like cells: (a) dramatically impairs attractant-induced actin polymerization, polarity, and chemotaxis; (b) substantially weakens Rac activation and phosphatidylinositol-(3,4,5)-tris-phosphate production, disrupting the (phosphatidylinositol-(3,4,5)-tris-phosphate)/Rac/F-actin–mediated feedback circuit that organizes the leading edge; and (c) prevents exclusion of activated myosin from the leading edge, perhaps by misregulating leading edge complexes that contain inhibitors of the Rho-actomyosin pathway. Taken together, these observations show that versatile Hem-1–containing complexes coordinate diverse regulatory signals at the leading edge of polarized neutrophils, including but not confined to those involving WAVE2-dependent actin polymerization.
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spelling pubmed-13341982006-01-24 Hem-1 Complexes Are Essential for Rac Activation, Actin Polymerization, and Myosin Regulation during Neutrophil Chemotaxis Weiner, Orion D Rentel, Maike C Ott, Alex Brown, Glenn E Jedrychowski, Mark Yaffe, Michael B Gygi, Steven P Cantley, Lewis C Bourne, Henry R Kirschner, Marc W PLoS Biol Research Article Migrating cells need to make different actin assemblies at the cell's leading and trailing edges and to maintain physical separation of signals for these assemblies. This asymmetric control of activities represents one important form of cell polarity. There are significant gaps in our understanding of the components involved in generating and maintaining polarity during chemotaxis. Here we characterize a family of complexes (which we term leading edge complexes), scaffolded by hematopoietic protein 1 (Hem-1), that organize the neutrophil's leading edge. The Wiskott-Aldrich syndrome protein family Verprolin-homologous protein (WAVE)2 complex, which mediates activation of actin polymerization by Rac, is only one member of this family. A subset of these leading edge complexes are biochemically separable from the WAVE2 complex and contain a diverse set of potential polarity-regulating proteins. RNA interference–mediated knockdown of Hem-1–containing complexes in neutrophil-like cells: (a) dramatically impairs attractant-induced actin polymerization, polarity, and chemotaxis; (b) substantially weakens Rac activation and phosphatidylinositol-(3,4,5)-tris-phosphate production, disrupting the (phosphatidylinositol-(3,4,5)-tris-phosphate)/Rac/F-actin–mediated feedback circuit that organizes the leading edge; and (c) prevents exclusion of activated myosin from the leading edge, perhaps by misregulating leading edge complexes that contain inhibitors of the Rho-actomyosin pathway. Taken together, these observations show that versatile Hem-1–containing complexes coordinate diverse regulatory signals at the leading edge of polarized neutrophils, including but not confined to those involving WAVE2-dependent actin polymerization. Public Library of Science 2006-02 2006-01-24 /pmc/articles/PMC1334198/ /pubmed/16417406 http://dx.doi.org/10.1371/journal.pbio.0040038 Text en Copyright: © 2006 Weiner et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Weiner, Orion D
Rentel, Maike C
Ott, Alex
Brown, Glenn E
Jedrychowski, Mark
Yaffe, Michael B
Gygi, Steven P
Cantley, Lewis C
Bourne, Henry R
Kirschner, Marc W
Hem-1 Complexes Are Essential for Rac Activation, Actin Polymerization, and Myosin Regulation during Neutrophil Chemotaxis
title Hem-1 Complexes Are Essential for Rac Activation, Actin Polymerization, and Myosin Regulation during Neutrophil Chemotaxis
title_full Hem-1 Complexes Are Essential for Rac Activation, Actin Polymerization, and Myosin Regulation during Neutrophil Chemotaxis
title_fullStr Hem-1 Complexes Are Essential for Rac Activation, Actin Polymerization, and Myosin Regulation during Neutrophil Chemotaxis
title_full_unstemmed Hem-1 Complexes Are Essential for Rac Activation, Actin Polymerization, and Myosin Regulation during Neutrophil Chemotaxis
title_short Hem-1 Complexes Are Essential for Rac Activation, Actin Polymerization, and Myosin Regulation during Neutrophil Chemotaxis
title_sort hem-1 complexes are essential for rac activation, actin polymerization, and myosin regulation during neutrophil chemotaxis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1334198/
https://www.ncbi.nlm.nih.gov/pubmed/16417406
http://dx.doi.org/10.1371/journal.pbio.0040038
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