Establishment of a Developmental Compartment Requires Interactions between Three Synergistic Cis-regulatory Modules.

The subdivision of cell populations in compartments is a key event during animal development. In Drosophila, the gene apterous (ap) divides the wing imaginal disc in dorsal vs ventral cell lineages and is required for wing formation. ap function as a dorsal selector gene has been extensively studied...

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Main Authors: Dimitri Bieli, Oguz Kanca, David Requena, Fisun Hamaratoglu, Daryl Gohl, Paul Schedl, Markus Affolter, Matthew Slattery, Martin Müller, Carlos Estella
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-10-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC4607503?pdf=render
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spelling doaj-7069a87b72ee4cd794133f0b9a4ae1812020-11-25T02:49:25ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042015-10-011110e100537610.1371/journal.pgen.1005376Establishment of a Developmental Compartment Requires Interactions between Three Synergistic Cis-regulatory Modules.Dimitri BieliOguz KancaDavid RequenaFisun HamaratogluDaryl GohlPaul SchedlMarkus AffolterMatthew SlatteryMartin MüllerCarlos EstellaThe subdivision of cell populations in compartments is a key event during animal development. In Drosophila, the gene apterous (ap) divides the wing imaginal disc in dorsal vs ventral cell lineages and is required for wing formation. ap function as a dorsal selector gene has been extensively studied. However, the regulation of its expression during wing development is poorly understood. In this study, we analyzed ap transcriptional regulation at the endogenous locus and identified three cis-regulatory modules (CRMs) essential for wing development. Only when the three CRMs are combined, robust ap expression is obtained. In addition, we genetically and molecularly analyzed the trans-factors that regulate these CRMs. Our results propose a three-step mechanism for the cell lineage compartment expression of ap that includes initial activation, positive autoregulation and Trithorax-mediated maintenance through separable CRMs.http://europepmc.org/articles/PMC4607503?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Dimitri Bieli
Oguz Kanca
David Requena
Fisun Hamaratoglu
Daryl Gohl
Paul Schedl
Markus Affolter
Matthew Slattery
Martin Müller
Carlos Estella
spellingShingle Dimitri Bieli
Oguz Kanca
David Requena
Fisun Hamaratoglu
Daryl Gohl
Paul Schedl
Markus Affolter
Matthew Slattery
Martin Müller
Carlos Estella
Establishment of a Developmental Compartment Requires Interactions between Three Synergistic Cis-regulatory Modules.
PLoS Genetics
author_facet Dimitri Bieli
Oguz Kanca
David Requena
Fisun Hamaratoglu
Daryl Gohl
Paul Schedl
Markus Affolter
Matthew Slattery
Martin Müller
Carlos Estella
author_sort Dimitri Bieli
title Establishment of a Developmental Compartment Requires Interactions between Three Synergistic Cis-regulatory Modules.
title_short Establishment of a Developmental Compartment Requires Interactions between Three Synergistic Cis-regulatory Modules.
title_full Establishment of a Developmental Compartment Requires Interactions between Three Synergistic Cis-regulatory Modules.
title_fullStr Establishment of a Developmental Compartment Requires Interactions between Three Synergistic Cis-regulatory Modules.
title_full_unstemmed Establishment of a Developmental Compartment Requires Interactions between Three Synergistic Cis-regulatory Modules.
title_sort establishment of a developmental compartment requires interactions between three synergistic cis-regulatory modules.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2015-10-01
description The subdivision of cell populations in compartments is a key event during animal development. In Drosophila, the gene apterous (ap) divides the wing imaginal disc in dorsal vs ventral cell lineages and is required for wing formation. ap function as a dorsal selector gene has been extensively studied. However, the regulation of its expression during wing development is poorly understood. In this study, we analyzed ap transcriptional regulation at the endogenous locus and identified three cis-regulatory modules (CRMs) essential for wing development. Only when the three CRMs are combined, robust ap expression is obtained. In addition, we genetically and molecularly analyzed the trans-factors that regulate these CRMs. Our results propose a three-step mechanism for the cell lineage compartment expression of ap that includes initial activation, positive autoregulation and Trithorax-mediated maintenance through separable CRMs.
url http://europepmc.org/articles/PMC4607503?pdf=render
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