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Systematic analysis of RhoGEF/GAP localizations uncovers regulators of mechanosensing and junction formation during epithelial cell division

Cell proliferation is central to epithelial tissue development, repair, and homeostasis. During cell division, small RhoGTPases control both actomyosin dynamics and cell-cell junction remodeling to faithfully segregate the genome while maintaining tissue polarity and integrity. To decipher the mecha...

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Detalles Bibliográficos
Autores principales: di Pietro, Florencia, Osswald, Mariana, De las Heras, José M., Cristo, Inês, López-Gay, Jesús, Wang, Zhimin, Pelletier, Stéphane, Gaugué, Isabelle, Leroy, Adrien, Martin, Charlotte, Morais-de-Sá, Eurico, Bellaïche, Yohanns
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10017266/
https://www.ncbi.nlm.nih.gov/pubmed/36917931
http://dx.doi.org/10.1016/j.cub.2023.01.028
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author di Pietro, Florencia
Osswald, Mariana
De las Heras, José M.
Cristo, Inês
López-Gay, Jesús
Wang, Zhimin
Pelletier, Stéphane
Gaugué, Isabelle
Leroy, Adrien
Martin, Charlotte
Morais-de-Sá, Eurico
Bellaïche, Yohanns
author_facet di Pietro, Florencia
Osswald, Mariana
De las Heras, José M.
Cristo, Inês
López-Gay, Jesús
Wang, Zhimin
Pelletier, Stéphane
Gaugué, Isabelle
Leroy, Adrien
Martin, Charlotte
Morais-de-Sá, Eurico
Bellaïche, Yohanns
author_sort di Pietro, Florencia
collection PubMed
description Cell proliferation is central to epithelial tissue development, repair, and homeostasis. During cell division, small RhoGTPases control both actomyosin dynamics and cell-cell junction remodeling to faithfully segregate the genome while maintaining tissue polarity and integrity. To decipher the mechanisms of RhoGTPase spatiotemporal regulation during epithelial cell division, we generated a transgenic fluorescently tagged library for the 48 Drosophila Rho guanine exchange factors (RhoGEFs) and GTPase-activating proteins (GAPs), and we systematically characterized their endogenous distributions by time-lapse microscopy. Therefore, we unveiled candidate regulators of the interplay between actomyosin and junctional dynamics during epithelial cell division. Building on these findings, we established that the conserved RhoGEF Cysts and RhoGEF4 play sequential and distinct roles to couple cytokinesis with de novo junction formation. During ring contraction, Cysts via Rho1 participates in the neighbor mechanosensing response, promoting daughter-daughter cell membrane juxtaposition in preparation to de novo junction formation. Subsequently and upon midbody formation, RhoGEF4 via Rac acts in the dividing cell to ensure the withdrawal of the neighboring cell membranes, thus controlling de novo junction length and cell-cell arrangements upon cytokinesis. Altogether, our findings delineate how the RhoGTPases Rho and Rac are locally and temporally activated during epithelial cytokinesis, highlighting the RhoGEF/GAP library as a key resource to understand the broad range of biological processes regulated by RhoGTPases.
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spelling pubmed-100172662023-03-16 Systematic analysis of RhoGEF/GAP localizations uncovers regulators of mechanosensing and junction formation during epithelial cell division di Pietro, Florencia Osswald, Mariana De las Heras, José M. Cristo, Inês López-Gay, Jesús Wang, Zhimin Pelletier, Stéphane Gaugué, Isabelle Leroy, Adrien Martin, Charlotte Morais-de-Sá, Eurico Bellaïche, Yohanns Curr Biol Article Cell proliferation is central to epithelial tissue development, repair, and homeostasis. During cell division, small RhoGTPases control both actomyosin dynamics and cell-cell junction remodeling to faithfully segregate the genome while maintaining tissue polarity and integrity. To decipher the mechanisms of RhoGTPase spatiotemporal regulation during epithelial cell division, we generated a transgenic fluorescently tagged library for the 48 Drosophila Rho guanine exchange factors (RhoGEFs) and GTPase-activating proteins (GAPs), and we systematically characterized their endogenous distributions by time-lapse microscopy. Therefore, we unveiled candidate regulators of the interplay between actomyosin and junctional dynamics during epithelial cell division. Building on these findings, we established that the conserved RhoGEF Cysts and RhoGEF4 play sequential and distinct roles to couple cytokinesis with de novo junction formation. During ring contraction, Cysts via Rho1 participates in the neighbor mechanosensing response, promoting daughter-daughter cell membrane juxtaposition in preparation to de novo junction formation. Subsequently and upon midbody formation, RhoGEF4 via Rac acts in the dividing cell to ensure the withdrawal of the neighboring cell membranes, thus controlling de novo junction length and cell-cell arrangements upon cytokinesis. Altogether, our findings delineate how the RhoGTPases Rho and Rac are locally and temporally activated during epithelial cytokinesis, highlighting the RhoGEF/GAP library as a key resource to understand the broad range of biological processes regulated by RhoGTPases. Cell Press 2023-03-13 /pmc/articles/PMC10017266/ /pubmed/36917931 http://dx.doi.org/10.1016/j.cub.2023.01.028 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the CC BY-NC license (http://creativecommons.org/licenses/by-nc/4.0/).
spellingShingle Article
di Pietro, Florencia
Osswald, Mariana
De las Heras, José M.
Cristo, Inês
López-Gay, Jesús
Wang, Zhimin
Pelletier, Stéphane
Gaugué, Isabelle
Leroy, Adrien
Martin, Charlotte
Morais-de-Sá, Eurico
Bellaïche, Yohanns
Systematic analysis of RhoGEF/GAP localizations uncovers regulators of mechanosensing and junction formation during epithelial cell division
title Systematic analysis of RhoGEF/GAP localizations uncovers regulators of mechanosensing and junction formation during epithelial cell division
title_full Systematic analysis of RhoGEF/GAP localizations uncovers regulators of mechanosensing and junction formation during epithelial cell division
title_fullStr Systematic analysis of RhoGEF/GAP localizations uncovers regulators of mechanosensing and junction formation during epithelial cell division
title_full_unstemmed Systematic analysis of RhoGEF/GAP localizations uncovers regulators of mechanosensing and junction formation during epithelial cell division
title_short Systematic analysis of RhoGEF/GAP localizations uncovers regulators of mechanosensing and junction formation during epithelial cell division
title_sort systematic analysis of rhogef/gap localizations uncovers regulators of mechanosensing and junction formation during epithelial cell division
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10017266/
https://www.ncbi.nlm.nih.gov/pubmed/36917931
http://dx.doi.org/10.1016/j.cub.2023.01.028
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