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Corto and DSP1 interact and bind to a maintenance element of the Scr Hox gene: understanding the role of Enhancers of trithorax and Polycomb

BACKGROUND: Polycomb-group genes (PcG) encode proteins that maintain homeotic (Hox) gene repression throughout development. Conversely, trithorax-group (trxG) genes encode positive factors required for maintenance of long term Hox gene activation. Both kinds of factors bind chromatin regions called...

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Autores principales: Salvaing, Juliette, Decoville, Martine, Mouchel-Vielh, Emmanuèle, Bussière, Marianne, Daulny, Anne, Boldyreva, Lidiya, Zhimulev, Igor, Locker, Daniel, Peronnet, Frédérique
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1459216/
https://www.ncbi.nlm.nih.gov/pubmed/16613610
http://dx.doi.org/10.1186/1741-7007-4-9
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author Salvaing, Juliette
Decoville, Martine
Mouchel-Vielh, Emmanuèle
Bussière, Marianne
Daulny, Anne
Boldyreva, Lidiya
Zhimulev, Igor
Locker, Daniel
Peronnet, Frédérique
author_facet Salvaing, Juliette
Decoville, Martine
Mouchel-Vielh, Emmanuèle
Bussière, Marianne
Daulny, Anne
Boldyreva, Lidiya
Zhimulev, Igor
Locker, Daniel
Peronnet, Frédérique
author_sort Salvaing, Juliette
collection PubMed
description BACKGROUND: Polycomb-group genes (PcG) encode proteins that maintain homeotic (Hox) gene repression throughout development. Conversely, trithorax-group (trxG) genes encode positive factors required for maintenance of long term Hox gene activation. Both kinds of factors bind chromatin regions called maintenance elements (ME). Our previous work has shown that corto, which codes for a chromodomain protein, and dsp1, which codes for an HMGB protein, belong to a class of genes called the Enhancers of trithorax and Polycomb (ETP) that interact with both PcG and trxG. Moreover, dsp1 interacts with the Hox gene Scr, the DSP1 protein is present on a Scr ME in S2 cells but not in embryos. To understand better the role of ETP, we addressed genetic and molecular interactions between corto and dsp1. RESULTS: We show that Corto and DSP1 proteins co-localize at 91 sites on polytene chromosomes and co-immunoprecipitate in embryos. They interact directly through the DSP1 HMG-boxes and the amino-part of Corto, which contains a chromodomain. In order to search for a common target, we performed a genetic interaction analysis. We observed that corto mutants suppressed dsp1(1 )sex comb phenotypes and enhanced Antp(Scx )phenotypes, suggesting that corto and dsp1 are simultaneously involved in the regulation of Scr. Using chromatin immunoprecipitation of the Scr ME, we found that Corto was present on this ME both in Drosophila S2 cells and in embryos, whereas DSP1 was present only in S2 cells. CONCLUSION: Our results reveal that the proteins Corto and DSP1 are differently recruited to a Scr ME depending on whether the ME is active, as seen in S2 cells, or inactive, as in most embryonic cells. The presence of a given combination of ETPs on an ME would control the recruitment of either PcG or TrxG complexes, propagating the silenced or active state.
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spelling pubmed-14592162006-05-11 Corto and DSP1 interact and bind to a maintenance element of the Scr Hox gene: understanding the role of Enhancers of trithorax and Polycomb Salvaing, Juliette Decoville, Martine Mouchel-Vielh, Emmanuèle Bussière, Marianne Daulny, Anne Boldyreva, Lidiya Zhimulev, Igor Locker, Daniel Peronnet, Frédérique BMC Biol Research Article BACKGROUND: Polycomb-group genes (PcG) encode proteins that maintain homeotic (Hox) gene repression throughout development. Conversely, trithorax-group (trxG) genes encode positive factors required for maintenance of long term Hox gene activation. Both kinds of factors bind chromatin regions called maintenance elements (ME). Our previous work has shown that corto, which codes for a chromodomain protein, and dsp1, which codes for an HMGB protein, belong to a class of genes called the Enhancers of trithorax and Polycomb (ETP) that interact with both PcG and trxG. Moreover, dsp1 interacts with the Hox gene Scr, the DSP1 protein is present on a Scr ME in S2 cells but not in embryos. To understand better the role of ETP, we addressed genetic and molecular interactions between corto and dsp1. RESULTS: We show that Corto and DSP1 proteins co-localize at 91 sites on polytene chromosomes and co-immunoprecipitate in embryos. They interact directly through the DSP1 HMG-boxes and the amino-part of Corto, which contains a chromodomain. In order to search for a common target, we performed a genetic interaction analysis. We observed that corto mutants suppressed dsp1(1 )sex comb phenotypes and enhanced Antp(Scx )phenotypes, suggesting that corto and dsp1 are simultaneously involved in the regulation of Scr. Using chromatin immunoprecipitation of the Scr ME, we found that Corto was present on this ME both in Drosophila S2 cells and in embryos, whereas DSP1 was present only in S2 cells. CONCLUSION: Our results reveal that the proteins Corto and DSP1 are differently recruited to a Scr ME depending on whether the ME is active, as seen in S2 cells, or inactive, as in most embryonic cells. The presence of a given combination of ETPs on an ME would control the recruitment of either PcG or TrxG complexes, propagating the silenced or active state. BioMed Central 2006-04-14 /pmc/articles/PMC1459216/ /pubmed/16613610 http://dx.doi.org/10.1186/1741-7007-4-9 Text en Copyright © 2006 Salvaing et al; licensee BioMed Central Ltd.
spellingShingle Research Article
Salvaing, Juliette
Decoville, Martine
Mouchel-Vielh, Emmanuèle
Bussière, Marianne
Daulny, Anne
Boldyreva, Lidiya
Zhimulev, Igor
Locker, Daniel
Peronnet, Frédérique
Corto and DSP1 interact and bind to a maintenance element of the Scr Hox gene: understanding the role of Enhancers of trithorax and Polycomb
title Corto and DSP1 interact and bind to a maintenance element of the Scr Hox gene: understanding the role of Enhancers of trithorax and Polycomb
title_full Corto and DSP1 interact and bind to a maintenance element of the Scr Hox gene: understanding the role of Enhancers of trithorax and Polycomb
title_fullStr Corto and DSP1 interact and bind to a maintenance element of the Scr Hox gene: understanding the role of Enhancers of trithorax and Polycomb
title_full_unstemmed Corto and DSP1 interact and bind to a maintenance element of the Scr Hox gene: understanding the role of Enhancers of trithorax and Polycomb
title_short Corto and DSP1 interact and bind to a maintenance element of the Scr Hox gene: understanding the role of Enhancers of trithorax and Polycomb
title_sort corto and dsp1 interact and bind to a maintenance element of the scr hox gene: understanding the role of enhancers of trithorax and polycomb
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1459216/
https://www.ncbi.nlm.nih.gov/pubmed/16613610
http://dx.doi.org/10.1186/1741-7007-4-9
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