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DRhoGEF2 Regulates Cellular Tension and Cell Pulsations in the Amnioserosa during Drosophila Dorsal Closure

Coordination of apical constriction in epithelial sheets is a fundamental process during embryogenesis. Here, we show that DRhoGEF2 is a key regulator of apical pulsation and constriction of amnioserosal cells during Drosophila dorsal closure. Amnioserosal cells mutant for DRhoGEF2 exhibit a consist...

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Autores principales: Azevedo, Dulce, Antunes, Marco, Prag, Soren, Ma, Xiaoyan, Hacker, Udo, Brodland, G. Wayne, Hutson, M. Shane, Solon, Jerome, Jacinto, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3174941/
https://www.ncbi.nlm.nih.gov/pubmed/21949688
http://dx.doi.org/10.1371/journal.pone.0023964
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author Azevedo, Dulce
Antunes, Marco
Prag, Soren
Ma, Xiaoyan
Hacker, Udo
Brodland, G. Wayne
Hutson, M. Shane
Solon, Jerome
Jacinto, Antonio
author_facet Azevedo, Dulce
Antunes, Marco
Prag, Soren
Ma, Xiaoyan
Hacker, Udo
Brodland, G. Wayne
Hutson, M. Shane
Solon, Jerome
Jacinto, Antonio
author_sort Azevedo, Dulce
collection PubMed
description Coordination of apical constriction in epithelial sheets is a fundamental process during embryogenesis. Here, we show that DRhoGEF2 is a key regulator of apical pulsation and constriction of amnioserosal cells during Drosophila dorsal closure. Amnioserosal cells mutant for DRhoGEF2 exhibit a consistent decrease in amnioserosa pulsations whereas overexpression of DRhoGEF2 in this tissue leads to an increase in the contraction time of pulsations. We probed the physical properties of the amnioserosa to show that the average tension in DRhoGEF2 mutant cells is lower than wild-type and that overexpression of DRhoGEF2 results in a tissue that is more solid-like than wild-type. We also observe that in the DRhoGEF2 overexpressing cells there is a dramatic increase of apical actomyosin coalescence that can contribute to the generation of more contractile forces, leading to amnioserosal cells with smaller apical surface than wild-type. Conversely, in DRhoGEF2 mutants, the apical actomyosin coalescence is impaired. These results identify DRhoGEF2 as an upstream regulator of the actomyosin contractile machinery that drives amnioserosa cells pulsations and apical constriction.
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spelling pubmed-31749412011-09-26 DRhoGEF2 Regulates Cellular Tension and Cell Pulsations in the Amnioserosa during Drosophila Dorsal Closure Azevedo, Dulce Antunes, Marco Prag, Soren Ma, Xiaoyan Hacker, Udo Brodland, G. Wayne Hutson, M. Shane Solon, Jerome Jacinto, Antonio PLoS One Research Article Coordination of apical constriction in epithelial sheets is a fundamental process during embryogenesis. Here, we show that DRhoGEF2 is a key regulator of apical pulsation and constriction of amnioserosal cells during Drosophila dorsal closure. Amnioserosal cells mutant for DRhoGEF2 exhibit a consistent decrease in amnioserosa pulsations whereas overexpression of DRhoGEF2 in this tissue leads to an increase in the contraction time of pulsations. We probed the physical properties of the amnioserosa to show that the average tension in DRhoGEF2 mutant cells is lower than wild-type and that overexpression of DRhoGEF2 results in a tissue that is more solid-like than wild-type. We also observe that in the DRhoGEF2 overexpressing cells there is a dramatic increase of apical actomyosin coalescence that can contribute to the generation of more contractile forces, leading to amnioserosal cells with smaller apical surface than wild-type. Conversely, in DRhoGEF2 mutants, the apical actomyosin coalescence is impaired. These results identify DRhoGEF2 as an upstream regulator of the actomyosin contractile machinery that drives amnioserosa cells pulsations and apical constriction. Public Library of Science 2011-09-16 /pmc/articles/PMC3174941/ /pubmed/21949688 http://dx.doi.org/10.1371/journal.pone.0023964 Text en Azevedo 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
Azevedo, Dulce
Antunes, Marco
Prag, Soren
Ma, Xiaoyan
Hacker, Udo
Brodland, G. Wayne
Hutson, M. Shane
Solon, Jerome
Jacinto, Antonio
DRhoGEF2 Regulates Cellular Tension and Cell Pulsations in the Amnioserosa during Drosophila Dorsal Closure
title DRhoGEF2 Regulates Cellular Tension and Cell Pulsations in the Amnioserosa during Drosophila Dorsal Closure
title_full DRhoGEF2 Regulates Cellular Tension and Cell Pulsations in the Amnioserosa during Drosophila Dorsal Closure
title_fullStr DRhoGEF2 Regulates Cellular Tension and Cell Pulsations in the Amnioserosa during Drosophila Dorsal Closure
title_full_unstemmed DRhoGEF2 Regulates Cellular Tension and Cell Pulsations in the Amnioserosa during Drosophila Dorsal Closure
title_short DRhoGEF2 Regulates Cellular Tension and Cell Pulsations in the Amnioserosa during Drosophila Dorsal Closure
title_sort drhogef2 regulates cellular tension and cell pulsations in the amnioserosa during drosophila dorsal closure
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3174941/
https://www.ncbi.nlm.nih.gov/pubmed/21949688
http://dx.doi.org/10.1371/journal.pone.0023964
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