The histone demethylase Jarid1b ensures faithful mouse development by protecting developmental genes from aberrant H3K4me3.

Embryonic development is tightly regulated by transcription factors and chromatin-associated proteins. H3K4me3 is associated with active transcription and H3K27me3 with gene repression, while the combination of both keeps genes required for development in a plastic state. Here we show that deletion...

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Main Authors: Mareike Albert, Sandra U Schmitz, Susanne M Kooistra, Martina Malatesta, Cristina Morales Torres, Jens C Rekling, Jens V Johansen, Iratxe Abarrategui, Kristian Helin
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-04-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC3630093?pdf=render
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spelling doaj-909a14ca09044a9fb1a9835d6d1b3cc22020-11-25T01:16:11ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042013-04-0194e100346110.1371/journal.pgen.1003461The histone demethylase Jarid1b ensures faithful mouse development by protecting developmental genes from aberrant H3K4me3.Mareike AlbertSandra U SchmitzSusanne M KooistraMartina MalatestaCristina Morales TorresJens C ReklingJens V JohansenIratxe AbarrateguiKristian HelinEmbryonic development is tightly regulated by transcription factors and chromatin-associated proteins. H3K4me3 is associated with active transcription and H3K27me3 with gene repression, while the combination of both keeps genes required for development in a plastic state. Here we show that deletion of the H3K4me2/3 histone demethylase Jarid1b (Kdm5b/Plu1) results in major neonatal lethality due to respiratory failure. Jarid1b knockout embryos have several neural defects including disorganized cranial nerves, defects in eye development, and increased incidences of exencephaly. Moreover, in line with an overlap of Jarid1b and Polycomb target genes, Jarid1b knockout embryos display homeotic skeletal transformations typical for Polycomb mutants, supporting a functional interplay between Polycomb proteins and Jarid1b. To understand how Jarid1b regulates mouse development, we performed a genome-wide analysis of histone modifications, which demonstrated that normally inactive genes encoding developmental regulators acquire aberrant H3K4me3 during early embryogenesis in Jarid1b knockout embryos. H3K4me3 accumulates as embryonic development proceeds, leading to increased expression of neural master regulators like Pax6 and Otx2 in Jarid1b knockout brains. Taken together, these results suggest that Jarid1b regulates mouse development by protecting developmental genes from inappropriate acquisition of active histone modifications.http://europepmc.org/articles/PMC3630093?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Mareike Albert
Sandra U Schmitz
Susanne M Kooistra
Martina Malatesta
Cristina Morales Torres
Jens C Rekling
Jens V Johansen
Iratxe Abarrategui
Kristian Helin
spellingShingle Mareike Albert
Sandra U Schmitz
Susanne M Kooistra
Martina Malatesta
Cristina Morales Torres
Jens C Rekling
Jens V Johansen
Iratxe Abarrategui
Kristian Helin
The histone demethylase Jarid1b ensures faithful mouse development by protecting developmental genes from aberrant H3K4me3.
PLoS Genetics
author_facet Mareike Albert
Sandra U Schmitz
Susanne M Kooistra
Martina Malatesta
Cristina Morales Torres
Jens C Rekling
Jens V Johansen
Iratxe Abarrategui
Kristian Helin
author_sort Mareike Albert
title The histone demethylase Jarid1b ensures faithful mouse development by protecting developmental genes from aberrant H3K4me3.
title_short The histone demethylase Jarid1b ensures faithful mouse development by protecting developmental genes from aberrant H3K4me3.
title_full The histone demethylase Jarid1b ensures faithful mouse development by protecting developmental genes from aberrant H3K4me3.
title_fullStr The histone demethylase Jarid1b ensures faithful mouse development by protecting developmental genes from aberrant H3K4me3.
title_full_unstemmed The histone demethylase Jarid1b ensures faithful mouse development by protecting developmental genes from aberrant H3K4me3.
title_sort histone demethylase jarid1b ensures faithful mouse development by protecting developmental genes from aberrant h3k4me3.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2013-04-01
description Embryonic development is tightly regulated by transcription factors and chromatin-associated proteins. H3K4me3 is associated with active transcription and H3K27me3 with gene repression, while the combination of both keeps genes required for development in a plastic state. Here we show that deletion of the H3K4me2/3 histone demethylase Jarid1b (Kdm5b/Plu1) results in major neonatal lethality due to respiratory failure. Jarid1b knockout embryos have several neural defects including disorganized cranial nerves, defects in eye development, and increased incidences of exencephaly. Moreover, in line with an overlap of Jarid1b and Polycomb target genes, Jarid1b knockout embryos display homeotic skeletal transformations typical for Polycomb mutants, supporting a functional interplay between Polycomb proteins and Jarid1b. To understand how Jarid1b regulates mouse development, we performed a genome-wide analysis of histone modifications, which demonstrated that normally inactive genes encoding developmental regulators acquire aberrant H3K4me3 during early embryogenesis in Jarid1b knockout embryos. H3K4me3 accumulates as embryonic development proceeds, leading to increased expression of neural master regulators like Pax6 and Otx2 in Jarid1b knockout brains. Taken together, these results suggest that Jarid1b regulates mouse development by protecting developmental genes from inappropriate acquisition of active histone modifications.
url http://europepmc.org/articles/PMC3630093?pdf=render
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