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Coactosin-Like 1 Antagonizes Cofilin to Promote Lamellipodial Protrusion at the Immune Synapse

Actin depolymerizing factor-homology (ADF-H) family proteins regulate actin filament dynamics at multiple cellular locations. Herein, we have investigated the function of the ADF-H family member coactosin-like 1 (COTL1) in the regulation of actin dynamics at the T cell immune synapse (IS). We initia...

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Autores principales: Kim, Joanna, Shapiro, Michael J., Bamidele, Adebowale O., Gurel, Pinar, Thapa, Puspa, Higgs, Henry N., Hedin, Karen E., Shapiro, Virginia S., Billadeau, Daniel D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3890291/
https://www.ncbi.nlm.nih.gov/pubmed/24454796
http://dx.doi.org/10.1371/journal.pone.0085090
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author Kim, Joanna
Shapiro, Michael J.
Bamidele, Adebowale O.
Gurel, Pinar
Thapa, Puspa
Higgs, Henry N.
Hedin, Karen E.
Shapiro, Virginia S.
Billadeau, Daniel D.
author_facet Kim, Joanna
Shapiro, Michael J.
Bamidele, Adebowale O.
Gurel, Pinar
Thapa, Puspa
Higgs, Henry N.
Hedin, Karen E.
Shapiro, Virginia S.
Billadeau, Daniel D.
author_sort Kim, Joanna
collection PubMed
description Actin depolymerizing factor-homology (ADF-H) family proteins regulate actin filament dynamics at multiple cellular locations. Herein, we have investigated the function of the ADF-H family member coactosin-like 1 (COTL1) in the regulation of actin dynamics at the T cell immune synapse (IS). We initially identified COTL1 in a genetic screen to identify novel regulators of T cell activation, and subsequently found that it associates with F-actin and localizes at the IS in response to TCR+CD28 stimulation. Live cell microscopy showed that depletion of COTL1 protein impaired T cell spreading in response to TCR ligation and abrogated lamellipodial protrusion at the T cell – B cell contact site, producing only a band of F-actin. Significantly, re-expression of wild type COTL1, but not a mutant deficient in F-actin binding could rescue these defects. In addition, COTL1 depletion reduced T cell migration. In vitro studies showed that COTL1 and cofilin compete with each other for binding to F-actin, and COTL1 protects F-actin from cofilin-mediated depolymerization. While depletion of cofilin enhanced F-actin assembly and lamellipodial protrusion at the IS, concurrent depletion of both COTL1 and cofilin restored lamellipodia formation. Taken together, our results suggest that COTL1 regulates lamellipodia dynamics in part by protecting F-actin from cofilin-mediated disassembly.
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spelling pubmed-38902912014-01-21 Coactosin-Like 1 Antagonizes Cofilin to Promote Lamellipodial Protrusion at the Immune Synapse Kim, Joanna Shapiro, Michael J. Bamidele, Adebowale O. Gurel, Pinar Thapa, Puspa Higgs, Henry N. Hedin, Karen E. Shapiro, Virginia S. Billadeau, Daniel D. PLoS One Research Article Actin depolymerizing factor-homology (ADF-H) family proteins regulate actin filament dynamics at multiple cellular locations. Herein, we have investigated the function of the ADF-H family member coactosin-like 1 (COTL1) in the regulation of actin dynamics at the T cell immune synapse (IS). We initially identified COTL1 in a genetic screen to identify novel regulators of T cell activation, and subsequently found that it associates with F-actin and localizes at the IS in response to TCR+CD28 stimulation. Live cell microscopy showed that depletion of COTL1 protein impaired T cell spreading in response to TCR ligation and abrogated lamellipodial protrusion at the T cell – B cell contact site, producing only a band of F-actin. Significantly, re-expression of wild type COTL1, but not a mutant deficient in F-actin binding could rescue these defects. In addition, COTL1 depletion reduced T cell migration. In vitro studies showed that COTL1 and cofilin compete with each other for binding to F-actin, and COTL1 protects F-actin from cofilin-mediated depolymerization. While depletion of cofilin enhanced F-actin assembly and lamellipodial protrusion at the IS, concurrent depletion of both COTL1 and cofilin restored lamellipodia formation. Taken together, our results suggest that COTL1 regulates lamellipodia dynamics in part by protecting F-actin from cofilin-mediated disassembly. Public Library of Science 2014-01-13 /pmc/articles/PMC3890291/ /pubmed/24454796 http://dx.doi.org/10.1371/journal.pone.0085090 Text en © 2014 Kim 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
Kim, Joanna
Shapiro, Michael J.
Bamidele, Adebowale O.
Gurel, Pinar
Thapa, Puspa
Higgs, Henry N.
Hedin, Karen E.
Shapiro, Virginia S.
Billadeau, Daniel D.
Coactosin-Like 1 Antagonizes Cofilin to Promote Lamellipodial Protrusion at the Immune Synapse
title Coactosin-Like 1 Antagonizes Cofilin to Promote Lamellipodial Protrusion at the Immune Synapse
title_full Coactosin-Like 1 Antagonizes Cofilin to Promote Lamellipodial Protrusion at the Immune Synapse
title_fullStr Coactosin-Like 1 Antagonizes Cofilin to Promote Lamellipodial Protrusion at the Immune Synapse
title_full_unstemmed Coactosin-Like 1 Antagonizes Cofilin to Promote Lamellipodial Protrusion at the Immune Synapse
title_short Coactosin-Like 1 Antagonizes Cofilin to Promote Lamellipodial Protrusion at the Immune Synapse
title_sort coactosin-like 1 antagonizes cofilin to promote lamellipodial protrusion at the immune synapse
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3890291/
https://www.ncbi.nlm.nih.gov/pubmed/24454796
http://dx.doi.org/10.1371/journal.pone.0085090
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