Cargando…

Genome-wide analyses of Shavenbaby target genes reveals distinct features of enhancer organization

BACKGROUND: Developmental programs are implemented by regulatory interactions between Transcription Factors (TFs) and their target genes, which remain poorly understood. While recent studies have focused on regulatory cascades of TFs that govern early development, little is known about how the ultim...

Descripción completa

Detalles Bibliográficos
Autores principales: Menoret, Delphine, Santolini, Marc, Fernandes, Isabelle, Spokony, Rebecca, Zanet, Jennifer, Gonzalez, Ignacio, Latapie, Yvan, Ferrer, Pierre, Rouault, Hervé, White, Kevin P, Besse, Philippe, Hakim, Vincent, Aerts, Stein, Payre, Francois, Plaza, Serge
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4053989/
https://www.ncbi.nlm.nih.gov/pubmed/23972280
http://dx.doi.org/10.1186/gb-2013-14-8-r86
_version_ 1782320483445768192
author Menoret, Delphine
Santolini, Marc
Fernandes, Isabelle
Spokony, Rebecca
Zanet, Jennifer
Gonzalez, Ignacio
Latapie, Yvan
Ferrer, Pierre
Rouault, Hervé
White, Kevin P
Besse, Philippe
Hakim, Vincent
Aerts, Stein
Payre, Francois
Plaza, Serge
author_facet Menoret, Delphine
Santolini, Marc
Fernandes, Isabelle
Spokony, Rebecca
Zanet, Jennifer
Gonzalez, Ignacio
Latapie, Yvan
Ferrer, Pierre
Rouault, Hervé
White, Kevin P
Besse, Philippe
Hakim, Vincent
Aerts, Stein
Payre, Francois
Plaza, Serge
author_sort Menoret, Delphine
collection PubMed
description BACKGROUND: Developmental programs are implemented by regulatory interactions between Transcription Factors (TFs) and their target genes, which remain poorly understood. While recent studies have focused on regulatory cascades of TFs that govern early development, little is known about how the ultimate effectors of cell differentiation are selected and controlled. We addressed this question during late Drosophila embryogenesis, when the finely tuned expression of the TF Ovo/Shavenbaby (Svb) triggers the morphological differentiation of epidermal trichomes. RESULTS: We defined a sizeable set of genes downstream of Svb and used in vivo assays to delineate 14 enhancers driving their specific expression in trichome cells. Coupling computational modeling to functional dissection, we investigated the regulatory logic of these enhancers. Extending the repertoire of epidermal effectors using genome-wide approaches showed that the regulatory models learned from this first sample are representative of the whole set of trichome enhancers. These enhancers harbor remarkable features with respect to their functional architectures, including a weak or non-existent clustering of Svb binding sites. The in vivo function of each site relies on its intimate context, notably the flanking nucleotides. Two additional cis-regulatory motifs, present in a broad diversity of composition and positioning among trichome enhancers, critically contribute to enhancer activity. CONCLUSIONS: Our results show that Svb directly regulates a large set of terminal effectors of the remodeling of epidermal cells. Further, these data reveal that trichome formation is underpinned by unexpectedly diverse modes of regulation, providing fresh insights into the functional architecture of enhancers governing a terminal differentiation program.
format Online
Article
Text
id pubmed-4053989
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-40539892014-06-12 Genome-wide analyses of Shavenbaby target genes reveals distinct features of enhancer organization Menoret, Delphine Santolini, Marc Fernandes, Isabelle Spokony, Rebecca Zanet, Jennifer Gonzalez, Ignacio Latapie, Yvan Ferrer, Pierre Rouault, Hervé White, Kevin P Besse, Philippe Hakim, Vincent Aerts, Stein Payre, Francois Plaza, Serge Genome Biol Research BACKGROUND: Developmental programs are implemented by regulatory interactions between Transcription Factors (TFs) and their target genes, which remain poorly understood. While recent studies have focused on regulatory cascades of TFs that govern early development, little is known about how the ultimate effectors of cell differentiation are selected and controlled. We addressed this question during late Drosophila embryogenesis, when the finely tuned expression of the TF Ovo/Shavenbaby (Svb) triggers the morphological differentiation of epidermal trichomes. RESULTS: We defined a sizeable set of genes downstream of Svb and used in vivo assays to delineate 14 enhancers driving their specific expression in trichome cells. Coupling computational modeling to functional dissection, we investigated the regulatory logic of these enhancers. Extending the repertoire of epidermal effectors using genome-wide approaches showed that the regulatory models learned from this first sample are representative of the whole set of trichome enhancers. These enhancers harbor remarkable features with respect to their functional architectures, including a weak or non-existent clustering of Svb binding sites. The in vivo function of each site relies on its intimate context, notably the flanking nucleotides. Two additional cis-regulatory motifs, present in a broad diversity of composition and positioning among trichome enhancers, critically contribute to enhancer activity. CONCLUSIONS: Our results show that Svb directly regulates a large set of terminal effectors of the remodeling of epidermal cells. Further, these data reveal that trichome formation is underpinned by unexpectedly diverse modes of regulation, providing fresh insights into the functional architecture of enhancers governing a terminal differentiation program. BioMed Central 2013 2013-08-23 /pmc/articles/PMC4053989/ /pubmed/23972280 http://dx.doi.org/10.1186/gb-2013-14-8-r86 Text en Copyright © 2013 Menoret et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Menoret, Delphine
Santolini, Marc
Fernandes, Isabelle
Spokony, Rebecca
Zanet, Jennifer
Gonzalez, Ignacio
Latapie, Yvan
Ferrer, Pierre
Rouault, Hervé
White, Kevin P
Besse, Philippe
Hakim, Vincent
Aerts, Stein
Payre, Francois
Plaza, Serge
Genome-wide analyses of Shavenbaby target genes reveals distinct features of enhancer organization
title Genome-wide analyses of Shavenbaby target genes reveals distinct features of enhancer organization
title_full Genome-wide analyses of Shavenbaby target genes reveals distinct features of enhancer organization
title_fullStr Genome-wide analyses of Shavenbaby target genes reveals distinct features of enhancer organization
title_full_unstemmed Genome-wide analyses of Shavenbaby target genes reveals distinct features of enhancer organization
title_short Genome-wide analyses of Shavenbaby target genes reveals distinct features of enhancer organization
title_sort genome-wide analyses of shavenbaby target genes reveals distinct features of enhancer organization
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4053989/
https://www.ncbi.nlm.nih.gov/pubmed/23972280
http://dx.doi.org/10.1186/gb-2013-14-8-r86
work_keys_str_mv AT menoretdelphine genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT santolinimarc genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT fernandesisabelle genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT spokonyrebecca genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT zanetjennifer genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT gonzalezignacio genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT latapieyvan genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT ferrerpierre genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT rouaultherve genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT whitekevinp genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT bessephilippe genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT hakimvincent genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT aertsstein genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT payrefrancois genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization
AT plazaserge genomewideanalysesofshavenbabytargetgenesrevealsdistinctfeaturesofenhancerorganization