Cargando…

Runx1 binds as a dimeric complex to overlapping Runx1 sites within a palindromic element in the human GM-CSF enhancer

Runx1 is a developmentally regulated transcription factor that is essential for haemopoiesis. Runx1 can bind as a monomer to the core consensus sequence TGTGG, but binds more efficiently as a hetero-dimer together with the non-DNA binding protein CBFβ as a complex termed core binding factor (CBF). H...

Descripción completa

Detalles Bibliográficos
Autores principales: Bowers, Sarion R., Calero-Nieto, Fernando J., Valeaux, Stephanie, Fernandez-Fuentes, Narcis, Cockerill, Peter N.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2952845/
https://www.ncbi.nlm.nih.gov/pubmed/20483917
http://dx.doi.org/10.1093/nar/gkq356
_version_ 1782187813689622528
author Bowers, Sarion R.
Calero-Nieto, Fernando J.
Valeaux, Stephanie
Fernandez-Fuentes, Narcis
Cockerill, Peter N.
author_facet Bowers, Sarion R.
Calero-Nieto, Fernando J.
Valeaux, Stephanie
Fernandez-Fuentes, Narcis
Cockerill, Peter N.
author_sort Bowers, Sarion R.
collection PubMed
description Runx1 is a developmentally regulated transcription factor that is essential for haemopoiesis. Runx1 can bind as a monomer to the core consensus sequence TGTGG, but binds more efficiently as a hetero-dimer together with the non-DNA binding protein CBFβ as a complex termed core binding factor (CBF). Here, we demonstrated that CBF can also assemble as a dimeric complex on two overlapping Runx1 sites within the palindromic sequence TGTGGCTGCCCACA in the human granulocyte macrophage colony-stimulating factor enhancer. Furthermore, we demonstrated that binding of Runx1 to the enhancer is rigidly controlled at the level of chromatin accessibility, and is dependent upon prior induction of NFAT and AP-1, which disrupt a positioned nucleosome in this region. We employed in vivo footprinting to demonstrate that, upon activation of the enhancer, both sites are efficiently occupied. In vitro binding assays confirmed that two CBF complexes can bind this site simultaneously, and transfection assays demonstrated that both sites contribute significantly to enhancer function. Computer modelling based on the Runx1/CBFβ/DNA crystal structure further revealed that two molecules of CBF could potentially bind to this class of palindromic sequence as a dimeric complex in a conformation whereby both Runx1 and CBFβ within the two CBF complexes are closely aligned.
format Text
id pubmed-2952845
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-29528452010-10-12 Runx1 binds as a dimeric complex to overlapping Runx1 sites within a palindromic element in the human GM-CSF enhancer Bowers, Sarion R. Calero-Nieto, Fernando J. Valeaux, Stephanie Fernandez-Fuentes, Narcis Cockerill, Peter N. Nucleic Acids Res Molecular Biology Runx1 is a developmentally regulated transcription factor that is essential for haemopoiesis. Runx1 can bind as a monomer to the core consensus sequence TGTGG, but binds more efficiently as a hetero-dimer together with the non-DNA binding protein CBFβ as a complex termed core binding factor (CBF). Here, we demonstrated that CBF can also assemble as a dimeric complex on two overlapping Runx1 sites within the palindromic sequence TGTGGCTGCCCACA in the human granulocyte macrophage colony-stimulating factor enhancer. Furthermore, we demonstrated that binding of Runx1 to the enhancer is rigidly controlled at the level of chromatin accessibility, and is dependent upon prior induction of NFAT and AP-1, which disrupt a positioned nucleosome in this region. We employed in vivo footprinting to demonstrate that, upon activation of the enhancer, both sites are efficiently occupied. In vitro binding assays confirmed that two CBF complexes can bind this site simultaneously, and transfection assays demonstrated that both sites contribute significantly to enhancer function. Computer modelling based on the Runx1/CBFβ/DNA crystal structure further revealed that two molecules of CBF could potentially bind to this class of palindromic sequence as a dimeric complex in a conformation whereby both Runx1 and CBFβ within the two CBF complexes are closely aligned. Oxford University Press 2010-10 2010-05-18 /pmc/articles/PMC2952845/ /pubmed/20483917 http://dx.doi.org/10.1093/nar/gkq356 Text en © The Author(s) 2010. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/2.5 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Molecular Biology
Bowers, Sarion R.
Calero-Nieto, Fernando J.
Valeaux, Stephanie
Fernandez-Fuentes, Narcis
Cockerill, Peter N.
Runx1 binds as a dimeric complex to overlapping Runx1 sites within a palindromic element in the human GM-CSF enhancer
title Runx1 binds as a dimeric complex to overlapping Runx1 sites within a palindromic element in the human GM-CSF enhancer
title_full Runx1 binds as a dimeric complex to overlapping Runx1 sites within a palindromic element in the human GM-CSF enhancer
title_fullStr Runx1 binds as a dimeric complex to overlapping Runx1 sites within a palindromic element in the human GM-CSF enhancer
title_full_unstemmed Runx1 binds as a dimeric complex to overlapping Runx1 sites within a palindromic element in the human GM-CSF enhancer
title_short Runx1 binds as a dimeric complex to overlapping Runx1 sites within a palindromic element in the human GM-CSF enhancer
title_sort runx1 binds as a dimeric complex to overlapping runx1 sites within a palindromic element in the human gm-csf enhancer
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2952845/
https://www.ncbi.nlm.nih.gov/pubmed/20483917
http://dx.doi.org/10.1093/nar/gkq356
work_keys_str_mv AT bowerssarionr runx1bindsasadimericcomplextooverlappingrunx1siteswithinapalindromicelementinthehumangmcsfenhancer
AT caleronietofernandoj runx1bindsasadimericcomplextooverlappingrunx1siteswithinapalindromicelementinthehumangmcsfenhancer
AT valeauxstephanie runx1bindsasadimericcomplextooverlappingrunx1siteswithinapalindromicelementinthehumangmcsfenhancer
AT fernandezfuentesnarcis runx1bindsasadimericcomplextooverlappingrunx1siteswithinapalindromicelementinthehumangmcsfenhancer
AT cockerillpetern runx1bindsasadimericcomplextooverlappingrunx1siteswithinapalindromicelementinthehumangmcsfenhancer