The core binding factor CBF negatively regulates skeletal muscle terminal differentiation.

BACKGROUND: Core Binding Factor or CBF is a transcription factor composed of two subunits, Runx1/AML-1 and CBF beta or CBFbeta. CBF was originally described as a regulator of hematopoiesis. METHODOLOGY/PRINCIPAL FINDINGS: Here we show that CBF is involved in the control of skeletal muscle terminal d...

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Main Authors: Ophélie Philipot, Véronique Joliot, Ouardia Ait-Mohamed, Céline Pellentz, Philippe Robin, Lauriane Fritsch, Slimane Ait-Si-Ali
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2828485?pdf=render
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spelling doaj-1c98dbe681fd4f0da28ad390daf7ebbc2020-11-24T21:46:42ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-01-0152e942510.1371/journal.pone.0009425The core binding factor CBF negatively regulates skeletal muscle terminal differentiation.Ophélie PhilipotVéronique JoliotOuardia Ait-MohamedCéline PellentzPhilippe RobinLauriane FritschSlimane Ait-Si-AliBACKGROUND: Core Binding Factor or CBF is a transcription factor composed of two subunits, Runx1/AML-1 and CBF beta or CBFbeta. CBF was originally described as a regulator of hematopoiesis. METHODOLOGY/PRINCIPAL FINDINGS: Here we show that CBF is involved in the control of skeletal muscle terminal differentiation. Indeed, downregulation of either Runx1 or CBFbeta protein level accelerates cell cycle exit and muscle terminal differentiation. Conversely, overexpression of CBFbeta in myoblasts slows terminal differentiation. CBF interacts directly with the master myogenic transcription factor MyoD, preferentially in proliferating myoblasts, via Runx1 subunit. In addition, we show a preferential recruitment of Runx1 protein to MyoD target genes in proliferating myoblasts. The MyoD/CBF complex contains several chromatin modifying enzymes that inhibits MyoD activity, such as HDACs, Suv39h1 and HP1beta. When overexpressed, CBFbeta induced an inhibition of activating histone modification marks concomitant with an increase in repressive modifications at MyoD target promoters. CONCLUSIONS/SIGNIFICANCE: Taken together, our data show a new role for Runx1/CBFbeta in the control of the proliferation/differentiation in skeletal myoblasts.http://europepmc.org/articles/PMC2828485?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ophélie Philipot
Véronique Joliot
Ouardia Ait-Mohamed
Céline Pellentz
Philippe Robin
Lauriane Fritsch
Slimane Ait-Si-Ali
spellingShingle Ophélie Philipot
Véronique Joliot
Ouardia Ait-Mohamed
Céline Pellentz
Philippe Robin
Lauriane Fritsch
Slimane Ait-Si-Ali
The core binding factor CBF negatively regulates skeletal muscle terminal differentiation.
PLoS ONE
author_facet Ophélie Philipot
Véronique Joliot
Ouardia Ait-Mohamed
Céline Pellentz
Philippe Robin
Lauriane Fritsch
Slimane Ait-Si-Ali
author_sort Ophélie Philipot
title The core binding factor CBF negatively regulates skeletal muscle terminal differentiation.
title_short The core binding factor CBF negatively regulates skeletal muscle terminal differentiation.
title_full The core binding factor CBF negatively regulates skeletal muscle terminal differentiation.
title_fullStr The core binding factor CBF negatively regulates skeletal muscle terminal differentiation.
title_full_unstemmed The core binding factor CBF negatively regulates skeletal muscle terminal differentiation.
title_sort core binding factor cbf negatively regulates skeletal muscle terminal differentiation.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-01-01
description BACKGROUND: Core Binding Factor or CBF is a transcription factor composed of two subunits, Runx1/AML-1 and CBF beta or CBFbeta. CBF was originally described as a regulator of hematopoiesis. METHODOLOGY/PRINCIPAL FINDINGS: Here we show that CBF is involved in the control of skeletal muscle terminal differentiation. Indeed, downregulation of either Runx1 or CBFbeta protein level accelerates cell cycle exit and muscle terminal differentiation. Conversely, overexpression of CBFbeta in myoblasts slows terminal differentiation. CBF interacts directly with the master myogenic transcription factor MyoD, preferentially in proliferating myoblasts, via Runx1 subunit. In addition, we show a preferential recruitment of Runx1 protein to MyoD target genes in proliferating myoblasts. The MyoD/CBF complex contains several chromatin modifying enzymes that inhibits MyoD activity, such as HDACs, Suv39h1 and HP1beta. When overexpressed, CBFbeta induced an inhibition of activating histone modification marks concomitant with an increase in repressive modifications at MyoD target promoters. CONCLUSIONS/SIGNIFICANCE: Taken together, our data show a new role for Runx1/CBFbeta in the control of the proliferation/differentiation in skeletal myoblasts.
url http://europepmc.org/articles/PMC2828485?pdf=render
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