The transcription factor Dysfusion promotes fold and joint morphogenesis through regulation of Rho1.

The mechanisms that control tissue patterning and cell behavior are extensively studied separately, but much less is known about how these two processes are coordinated. Here we show that the Drosophila transcription factor Dysfusion (Dysf) directs leg epithelial folding and joint formation through...

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Main Authors: Sergio Córdoba, Carlos Estella
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-08-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC6095628?pdf=render
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spelling doaj-ae2bffbb4dd848d09387b763c8b9b6c62020-11-25T02:32:56ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042018-08-01148e100758410.1371/journal.pgen.1007584The transcription factor Dysfusion promotes fold and joint morphogenesis through regulation of Rho1.Sergio CórdobaCarlos EstellaThe mechanisms that control tissue patterning and cell behavior are extensively studied separately, but much less is known about how these two processes are coordinated. Here we show that the Drosophila transcription factor Dysfusion (Dysf) directs leg epithelial folding and joint formation through the regulation of Rho1 activity. We found that Dysf-induced Rho1 activity promotes apical constriction specifically in folding epithelial cells. Here we show that downregulation of Rho1 or its downstream effectors cause defects in fold and joint formation. In addition, Rho1 and its effectors are sufficient to induce the formation of epithelial folds when misexpressed in a flat epithelium. Furthermore, as apoptotic cells can actively control tissue remodeling, we analyzed the role of cell death in the formation of tarsal folds and its relation to Rho1 activity. Surprisingly, we found no defects in this process when apoptosis is inhibited. Our results highlight the coordination between a patterning transcription factor and the cellular processes that cause the cell shape changes necessary to sculpt a flat epithelium into a three dimensional structure.http://europepmc.org/articles/PMC6095628?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Sergio Córdoba
Carlos Estella
spellingShingle Sergio Córdoba
Carlos Estella
The transcription factor Dysfusion promotes fold and joint morphogenesis through regulation of Rho1.
PLoS Genetics
author_facet Sergio Córdoba
Carlos Estella
author_sort Sergio Córdoba
title The transcription factor Dysfusion promotes fold and joint morphogenesis through regulation of Rho1.
title_short The transcription factor Dysfusion promotes fold and joint morphogenesis through regulation of Rho1.
title_full The transcription factor Dysfusion promotes fold and joint morphogenesis through regulation of Rho1.
title_fullStr The transcription factor Dysfusion promotes fold and joint morphogenesis through regulation of Rho1.
title_full_unstemmed The transcription factor Dysfusion promotes fold and joint morphogenesis through regulation of Rho1.
title_sort transcription factor dysfusion promotes fold and joint morphogenesis through regulation of rho1.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2018-08-01
description The mechanisms that control tissue patterning and cell behavior are extensively studied separately, but much less is known about how these two processes are coordinated. Here we show that the Drosophila transcription factor Dysfusion (Dysf) directs leg epithelial folding and joint formation through the regulation of Rho1 activity. We found that Dysf-induced Rho1 activity promotes apical constriction specifically in folding epithelial cells. Here we show that downregulation of Rho1 or its downstream effectors cause defects in fold and joint formation. In addition, Rho1 and its effectors are sufficient to induce the formation of epithelial folds when misexpressed in a flat epithelium. Furthermore, as apoptotic cells can actively control tissue remodeling, we analyzed the role of cell death in the formation of tarsal folds and its relation to Rho1 activity. Surprisingly, we found no defects in this process when apoptosis is inhibited. Our results highlight the coordination between a patterning transcription factor and the cellular processes that cause the cell shape changes necessary to sculpt a flat epithelium into a three dimensional structure.
url http://europepmc.org/articles/PMC6095628?pdf=render
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