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C. elegans Enabled Exhibits Novel Interactions with N-WASP, Abl, and Cell-Cell Junctions

Ena/VASP proteins are associated with cell-cell junctions in cultured mammalian cells [1] and Drosophila epithelia [2, 3], but they have only been extensively studied at the leading edges of migratory fibroblasts, where they modulate the protrusion of the leading edge [4]. They act by regulating act...

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Detalles Bibliográficos
Autores principales: Sheffield, Mark, Loveless, Timothy, Hardin, Jeff, Pettitt, Jonathan
Formato: Texto
Lenguaje:English
Publicado: Cell Press 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2045632/
https://www.ncbi.nlm.nih.gov/pubmed/17935994
http://dx.doi.org/10.1016/j.cub.2007.09.033
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author Sheffield, Mark
Loveless, Timothy
Hardin, Jeff
Pettitt, Jonathan
author_facet Sheffield, Mark
Loveless, Timothy
Hardin, Jeff
Pettitt, Jonathan
author_sort Sheffield, Mark
collection PubMed
description Ena/VASP proteins are associated with cell-cell junctions in cultured mammalian cells [1] and Drosophila epithelia [2, 3], but they have only been extensively studied at the leading edges of migratory fibroblasts, where they modulate the protrusion of the leading edge [4]. They act by regulating actin-filament geometry, antagonizing the effects of actin-capping protein [5]. Embryos lacking the C. elegans Ena/VASP, UNC-34, display subtle defects in the leading edges of migrating epidermal cells but undergo normal epidermal morphogenesis. In contrast, embryos lacking both UNC-34 and the C. elegans N-WASP homolog have severe defects in epidermal morphogenesis, suggesting that they have parallel roles in coordinating cell behavior. GFP-tagged UNC-34 localizes to the leading edges of migrating epidermal cells, becoming redistributed to new junctions that form during epidermal-sheet sealing. Consistent with this, UNC-34 contributes to the formation of cadherin-based junctions. The junctional localization of UNC-34 is independent of proteins involved in Ena/VASP localization in other experimental systems; instead, junctional distribution depends upon the junctional protein AJM-1. We also show that Abelson tyrosine kinase, a major regulator of Enabled in Drosophila, is not required for UNC-34/Ena function in epithelia. Instead, our data suggest that Abelson kinase acts in parallel to UNC-34/Ena, antagonizing its function.
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spelling pubmed-20456322007-10-30 C. elegans Enabled Exhibits Novel Interactions with N-WASP, Abl, and Cell-Cell Junctions Sheffield, Mark Loveless, Timothy Hardin, Jeff Pettitt, Jonathan Curr Biol Report Ena/VASP proteins are associated with cell-cell junctions in cultured mammalian cells [1] and Drosophila epithelia [2, 3], but they have only been extensively studied at the leading edges of migratory fibroblasts, where they modulate the protrusion of the leading edge [4]. They act by regulating actin-filament geometry, antagonizing the effects of actin-capping protein [5]. Embryos lacking the C. elegans Ena/VASP, UNC-34, display subtle defects in the leading edges of migrating epidermal cells but undergo normal epidermal morphogenesis. In contrast, embryos lacking both UNC-34 and the C. elegans N-WASP homolog have severe defects in epidermal morphogenesis, suggesting that they have parallel roles in coordinating cell behavior. GFP-tagged UNC-34 localizes to the leading edges of migrating epidermal cells, becoming redistributed to new junctions that form during epidermal-sheet sealing. Consistent with this, UNC-34 contributes to the formation of cadherin-based junctions. The junctional localization of UNC-34 is independent of proteins involved in Ena/VASP localization in other experimental systems; instead, junctional distribution depends upon the junctional protein AJM-1. We also show that Abelson tyrosine kinase, a major regulator of Enabled in Drosophila, is not required for UNC-34/Ena function in epithelia. Instead, our data suggest that Abelson kinase acts in parallel to UNC-34/Ena, antagonizing its function. Cell Press 2007-10-23 /pmc/articles/PMC2045632/ /pubmed/17935994 http://dx.doi.org/10.1016/j.cub.2007.09.033 Text en . https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Report
Sheffield, Mark
Loveless, Timothy
Hardin, Jeff
Pettitt, Jonathan
C. elegans Enabled Exhibits Novel Interactions with N-WASP, Abl, and Cell-Cell Junctions
title C. elegans Enabled Exhibits Novel Interactions with N-WASP, Abl, and Cell-Cell Junctions
title_full C. elegans Enabled Exhibits Novel Interactions with N-WASP, Abl, and Cell-Cell Junctions
title_fullStr C. elegans Enabled Exhibits Novel Interactions with N-WASP, Abl, and Cell-Cell Junctions
title_full_unstemmed C. elegans Enabled Exhibits Novel Interactions with N-WASP, Abl, and Cell-Cell Junctions
title_short C. elegans Enabled Exhibits Novel Interactions with N-WASP, Abl, and Cell-Cell Junctions
title_sort c. elegans enabled exhibits novel interactions with n-wasp, abl, and cell-cell junctions
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2045632/
https://www.ncbi.nlm.nih.gov/pubmed/17935994
http://dx.doi.org/10.1016/j.cub.2007.09.033
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