Conditional inactivation of Upstream Binding Factor reveals its epigenetic functions and the existence of a somatic nucleolar precursor body.

Upstream Binding Factor (UBF) is a unique multi-HMGB-box protein first identified as a co-factor in RNA polymerase I (RPI/PolI) transcription. However, its poor DNA sequence selectivity and its ability to generate nucleosome-like nucleoprotein complexes suggest a more generalized role in chromatin s...

Full description

Bibliographic Details
Main Authors: Nourdine Hamdane, Victor Y Stefanovsky, Michel G Tremblay, Attila Németh, Eric Paquet, Frédéric Lessard, Elaine Sanij, Ross Hannan, Tom Moss
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-08-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC4133168?pdf=render
id doaj-53e9745c1f374425b09397286f555185
record_format Article
spelling doaj-53e9745c1f374425b09397286f5551852020-11-25T02:12:46ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042014-08-01108e100450510.1371/journal.pgen.1004505Conditional inactivation of Upstream Binding Factor reveals its epigenetic functions and the existence of a somatic nucleolar precursor body.Nourdine HamdaneVictor Y StefanovskyMichel G TremblayAttila NémethEric PaquetFrédéric LessardElaine SanijRoss HannanTom MossUpstream Binding Factor (UBF) is a unique multi-HMGB-box protein first identified as a co-factor in RNA polymerase I (RPI/PolI) transcription. However, its poor DNA sequence selectivity and its ability to generate nucleosome-like nucleoprotein complexes suggest a more generalized role in chromatin structure. We previously showed that extensive depletion of UBF reduced the number of actively transcribed ribosomal RNA (rRNA) genes, but had little effect on rRNA synthesis rates or cell proliferation, leaving open the question of its requirement for RPI transcription. Using gene deletion in mouse, we now show that UBF is essential for embryo development beyond morula. Conditional deletion in cell cultures reveals that UBF is also essential for transcription of the rRNA genes and that it defines the active chromatin conformation of both gene and enhancer sequences. Loss of UBF prevents formation of the SL1/TIF1B pre-initiation complex and recruitment of the RPI-Rrn3/TIF1A complex. It is also accompanied by recruitment of H3K9me3, canonical histone H1 and HP1α, but not by de novo DNA methylation. Further, genes retain penta-acetyl H4 and H2A.Z, suggesting that even in the absence of UBF the rRNA genes can maintain a potentially active state. In contrast to canonical histone H1, binding of H1.4 is dependent on UBF, strongly suggesting that it plays a positive role in gene activity. Unexpectedly, arrest of rRNA synthesis does not suppress transcription of the 5S, tRNA or snRNA genes, nor expression of the several hundred mRNA genes implicated in ribosome biogenesis. Thus, rRNA gene activity does not coordinate global gene expression for ribosome biogenesis. Loss of UBF also unexpectedly induced the formation in cells of a large sub-nuclear structure resembling the nucleolar precursor body (NPB) of oocytes and early embryos. These somatic NPBs contain rRNA synthesis and processing factors but do not associate with the rRNA gene loci (NORs).http://europepmc.org/articles/PMC4133168?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Nourdine Hamdane
Victor Y Stefanovsky
Michel G Tremblay
Attila Németh
Eric Paquet
Frédéric Lessard
Elaine Sanij
Ross Hannan
Tom Moss
spellingShingle Nourdine Hamdane
Victor Y Stefanovsky
Michel G Tremblay
Attila Németh
Eric Paquet
Frédéric Lessard
Elaine Sanij
Ross Hannan
Tom Moss
Conditional inactivation of Upstream Binding Factor reveals its epigenetic functions and the existence of a somatic nucleolar precursor body.
PLoS Genetics
author_facet Nourdine Hamdane
Victor Y Stefanovsky
Michel G Tremblay
Attila Németh
Eric Paquet
Frédéric Lessard
Elaine Sanij
Ross Hannan
Tom Moss
author_sort Nourdine Hamdane
title Conditional inactivation of Upstream Binding Factor reveals its epigenetic functions and the existence of a somatic nucleolar precursor body.
title_short Conditional inactivation of Upstream Binding Factor reveals its epigenetic functions and the existence of a somatic nucleolar precursor body.
title_full Conditional inactivation of Upstream Binding Factor reveals its epigenetic functions and the existence of a somatic nucleolar precursor body.
title_fullStr Conditional inactivation of Upstream Binding Factor reveals its epigenetic functions and the existence of a somatic nucleolar precursor body.
title_full_unstemmed Conditional inactivation of Upstream Binding Factor reveals its epigenetic functions and the existence of a somatic nucleolar precursor body.
title_sort conditional inactivation of upstream binding factor reveals its epigenetic functions and the existence of a somatic nucleolar precursor body.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2014-08-01
description Upstream Binding Factor (UBF) is a unique multi-HMGB-box protein first identified as a co-factor in RNA polymerase I (RPI/PolI) transcription. However, its poor DNA sequence selectivity and its ability to generate nucleosome-like nucleoprotein complexes suggest a more generalized role in chromatin structure. We previously showed that extensive depletion of UBF reduced the number of actively transcribed ribosomal RNA (rRNA) genes, but had little effect on rRNA synthesis rates or cell proliferation, leaving open the question of its requirement for RPI transcription. Using gene deletion in mouse, we now show that UBF is essential for embryo development beyond morula. Conditional deletion in cell cultures reveals that UBF is also essential for transcription of the rRNA genes and that it defines the active chromatin conformation of both gene and enhancer sequences. Loss of UBF prevents formation of the SL1/TIF1B pre-initiation complex and recruitment of the RPI-Rrn3/TIF1A complex. It is also accompanied by recruitment of H3K9me3, canonical histone H1 and HP1α, but not by de novo DNA methylation. Further, genes retain penta-acetyl H4 and H2A.Z, suggesting that even in the absence of UBF the rRNA genes can maintain a potentially active state. In contrast to canonical histone H1, binding of H1.4 is dependent on UBF, strongly suggesting that it plays a positive role in gene activity. Unexpectedly, arrest of rRNA synthesis does not suppress transcription of the 5S, tRNA or snRNA genes, nor expression of the several hundred mRNA genes implicated in ribosome biogenesis. Thus, rRNA gene activity does not coordinate global gene expression for ribosome biogenesis. Loss of UBF also unexpectedly induced the formation in cells of a large sub-nuclear structure resembling the nucleolar precursor body (NPB) of oocytes and early embryos. These somatic NPBs contain rRNA synthesis and processing factors but do not associate with the rRNA gene loci (NORs).
url http://europepmc.org/articles/PMC4133168?pdf=render
work_keys_str_mv AT nourdinehamdane conditionalinactivationofupstreambindingfactorrevealsitsepigeneticfunctionsandtheexistenceofasomaticnucleolarprecursorbody
AT victorystefanovsky conditionalinactivationofupstreambindingfactorrevealsitsepigeneticfunctionsandtheexistenceofasomaticnucleolarprecursorbody
AT michelgtremblay conditionalinactivationofupstreambindingfactorrevealsitsepigeneticfunctionsandtheexistenceofasomaticnucleolarprecursorbody
AT attilanemeth conditionalinactivationofupstreambindingfactorrevealsitsepigeneticfunctionsandtheexistenceofasomaticnucleolarprecursorbody
AT ericpaquet conditionalinactivationofupstreambindingfactorrevealsitsepigeneticfunctionsandtheexistenceofasomaticnucleolarprecursorbody
AT fredericlessard conditionalinactivationofupstreambindingfactorrevealsitsepigeneticfunctionsandtheexistenceofasomaticnucleolarprecursorbody
AT elainesanij conditionalinactivationofupstreambindingfactorrevealsitsepigeneticfunctionsandtheexistenceofasomaticnucleolarprecursorbody
AT rosshannan conditionalinactivationofupstreambindingfactorrevealsitsepigeneticfunctionsandtheexistenceofasomaticnucleolarprecursorbody
AT tommoss conditionalinactivationofupstreambindingfactorrevealsitsepigeneticfunctionsandtheexistenceofasomaticnucleolarprecursorbody
_version_ 1724908286052925440