Cargando…

The transcriptional corepressor SMRTER influences both Notch and ecdysone signaling during Drosophila development

SMRTER (SMRT-related and ecdysone receptor interacting factor) is the Drosophila homologue of the vertebrate proteins SMRT and N-CoR, and forms with them a well-conserved family of transcriptional corepressors. Molecular characterization of SMRT-family proteins in cultured cells has implicated them...

Descripción completa

Detalles Bibliográficos
Autores principales: Heck, Bryan W., Zhang, Bin, Tong, Xin, Pan, Zui, Deng, Wu-Min, Tsai, Chih-Cheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3507286/
https://www.ncbi.nlm.nih.gov/pubmed/23213409
http://dx.doi.org/10.1242/bio.2012047
_version_ 1782251052604588032
author Heck, Bryan W.
Zhang, Bin
Tong, Xin
Pan, Zui
Deng, Wu-Min
Tsai, Chih-Cheng
author_facet Heck, Bryan W.
Zhang, Bin
Tong, Xin
Pan, Zui
Deng, Wu-Min
Tsai, Chih-Cheng
author_sort Heck, Bryan W.
collection PubMed
description SMRTER (SMRT-related and ecdysone receptor interacting factor) is the Drosophila homologue of the vertebrate proteins SMRT and N-CoR, and forms with them a well-conserved family of transcriptional corepressors. Molecular characterization of SMRT-family proteins in cultured cells has implicated them in a wide range of transcriptional regulatory pathways. However, little is currently known about how this conserved class of transcriptional corepressors regulates the development of particular tissues via specific pathways. In this study, through our characterization of multiple Smrter (Smr) mutant lines, mosaic analysis of a loss-of-function Smr allele, and studies of two independent Smr RNAi fly lines, we report that SMRTER is required for the development of both ovarian follicle cells and the wing. In these two tissues, SMRTER inhibits not only the ecdysone pathway, but also the Notch pathway. We differentiate SMRTER's influence on these two signaling pathways by showing that SMRTER inhibits the Notch pathway, but not the ecdysone pathway, in a spatiotemporally restricted manner. We further confirm the likely involvement of SMRTER in the Notch pathway by demonstrating a direct interaction between SMRTER and Suppressor of Hairless [Su(H)], a DNA-binding transcription factor pivotal in the Notch pathway, and the colocalization of both proteins at many chromosomal regions in salivary glands. Based on our results, we propose that SMRTER regulates the Notch pathway through its association with Su(H), and that overcoming a SMRTER-mediated transcriptional repression barrier may represent a key mechanism used by the Notch pathway to control the precise timing of events and the formation of sharp boundaries between cells in multiple tissues during development.
format Online
Article
Text
id pubmed-3507286
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher The Company of Biologists
record_format MEDLINE/PubMed
spelling pubmed-35072862012-12-04 The transcriptional corepressor SMRTER influences both Notch and ecdysone signaling during Drosophila development Heck, Bryan W. Zhang, Bin Tong, Xin Pan, Zui Deng, Wu-Min Tsai, Chih-Cheng Biol Open Research Article SMRTER (SMRT-related and ecdysone receptor interacting factor) is the Drosophila homologue of the vertebrate proteins SMRT and N-CoR, and forms with them a well-conserved family of transcriptional corepressors. Molecular characterization of SMRT-family proteins in cultured cells has implicated them in a wide range of transcriptional regulatory pathways. However, little is currently known about how this conserved class of transcriptional corepressors regulates the development of particular tissues via specific pathways. In this study, through our characterization of multiple Smrter (Smr) mutant lines, mosaic analysis of a loss-of-function Smr allele, and studies of two independent Smr RNAi fly lines, we report that SMRTER is required for the development of both ovarian follicle cells and the wing. In these two tissues, SMRTER inhibits not only the ecdysone pathway, but also the Notch pathway. We differentiate SMRTER's influence on these two signaling pathways by showing that SMRTER inhibits the Notch pathway, but not the ecdysone pathway, in a spatiotemporally restricted manner. We further confirm the likely involvement of SMRTER in the Notch pathway by demonstrating a direct interaction between SMRTER and Suppressor of Hairless [Su(H)], a DNA-binding transcription factor pivotal in the Notch pathway, and the colocalization of both proteins at many chromosomal regions in salivary glands. Based on our results, we propose that SMRTER regulates the Notch pathway through its association with Su(H), and that overcoming a SMRTER-mediated transcriptional repression barrier may represent a key mechanism used by the Notch pathway to control the precise timing of events and the formation of sharp boundaries between cells in multiple tissues during development. The Company of Biologists 2011-12-28 /pmc/articles/PMC3507286/ /pubmed/23213409 http://dx.doi.org/10.1242/bio.2012047 Text en © 2012. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by-nc-sa/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial Share Alike License (http://creativecommons.org/licenses/by-nc-sa/3.0/).
spellingShingle Research Article
Heck, Bryan W.
Zhang, Bin
Tong, Xin
Pan, Zui
Deng, Wu-Min
Tsai, Chih-Cheng
The transcriptional corepressor SMRTER influences both Notch and ecdysone signaling during Drosophila development
title The transcriptional corepressor SMRTER influences both Notch and ecdysone signaling during Drosophila development
title_full The transcriptional corepressor SMRTER influences both Notch and ecdysone signaling during Drosophila development
title_fullStr The transcriptional corepressor SMRTER influences both Notch and ecdysone signaling during Drosophila development
title_full_unstemmed The transcriptional corepressor SMRTER influences both Notch and ecdysone signaling during Drosophila development
title_short The transcriptional corepressor SMRTER influences both Notch and ecdysone signaling during Drosophila development
title_sort transcriptional corepressor smrter influences both notch and ecdysone signaling during drosophila development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3507286/
https://www.ncbi.nlm.nih.gov/pubmed/23213409
http://dx.doi.org/10.1242/bio.2012047
work_keys_str_mv AT heckbryanw thetranscriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment
AT zhangbin thetranscriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment
AT tongxin thetranscriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment
AT panzui thetranscriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment
AT dengwumin thetranscriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment
AT tsaichihcheng thetranscriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment
AT heckbryanw transcriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment
AT zhangbin transcriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment
AT tongxin transcriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment
AT panzui transcriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment
AT dengwumin transcriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment
AT tsaichihcheng transcriptionalcorepressorsmrterinfluencesbothnotchandecdysonesignalingduringdrosophiladevelopment