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Plasticity of Fission Yeast CENP-A Chromatin Driven by Relative Levels of Histone H3 and H4

The histone H3 variant CENP-A assembles into chromatin exclusively at centromeres. The process of CENP-A chromatin assembly is epigenetically regulated. Fission yeast centromeres are composed of a central kinetochore domain on which CENP-A chromatin is assembled, and this is flanked by heterochromat...

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Autores principales: Castillo, Araceli G, Mellone, Barbara G, Partridge, Janet F, Richardson, William, Hamilton, Georgina L, Allshire, Robin C, Pidoux, Alison L
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1934396/
https://www.ncbi.nlm.nih.gov/pubmed/17677001
http://dx.doi.org/10.1371/journal.pgen.0030121
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author Castillo, Araceli G
Mellone, Barbara G
Partridge, Janet F
Richardson, William
Hamilton, Georgina L
Allshire, Robin C
Pidoux, Alison L
author_facet Castillo, Araceli G
Mellone, Barbara G
Partridge, Janet F
Richardson, William
Hamilton, Georgina L
Allshire, Robin C
Pidoux, Alison L
author_sort Castillo, Araceli G
collection PubMed
description The histone H3 variant CENP-A assembles into chromatin exclusively at centromeres. The process of CENP-A chromatin assembly is epigenetically regulated. Fission yeast centromeres are composed of a central kinetochore domain on which CENP-A chromatin is assembled, and this is flanked by heterochromatin. Marker genes are silenced when placed within kinetochore or heterochromatin domains. It is not known if fission yeast CENP-A(Cnp1) chromatin is confined to specific sequences or whether histone H3 is actively excluded. Here, we show that fission yeast CENP-A(Cnp1) can assemble on noncentromeric DNA when it is inserted within the central kinetochore domain, suggesting that in fission yeast CENP-A(Cnp1) chromatin assembly is driven by the context of a sequence rather than the underlying DNA sequence itself. Silencing in the central domain is correlated with the amount of CENP-A(Cnp1) associated with the marker gene and is also affected by the relative level of histone H3. Our analyses indicate that kinetochore integrity is dependent on maintaining the normal ratio of H3 and H4. Excess H3 competes with CENP-A(Cnp1) for assembly into central domain chromatin, resulting in less CENP-A(Cnp1) and other kinetochore proteins at centromeres causing defective kinetochore function, which is manifest as aberrant mitotic chromosome segregation. Alterations in the levels of H3 relative to H4 and CENP-A(Cnp1) influence the extent of DNA at centromeres that is packaged in CENP-A(Cnp1) chromatin and the composition of this chromatin. Thus, CENP-A(Cnp1) chromatin assembly in fission yeast exhibits plasticity with respect to the underlying sequences and is sensitive to the levels of CENP-A(Cnp1) and other core histones.
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spelling pubmed-19343962007-07-28 Plasticity of Fission Yeast CENP-A Chromatin Driven by Relative Levels of Histone H3 and H4 Castillo, Araceli G Mellone, Barbara G Partridge, Janet F Richardson, William Hamilton, Georgina L Allshire, Robin C Pidoux, Alison L PLoS Genet Research Article The histone H3 variant CENP-A assembles into chromatin exclusively at centromeres. The process of CENP-A chromatin assembly is epigenetically regulated. Fission yeast centromeres are composed of a central kinetochore domain on which CENP-A chromatin is assembled, and this is flanked by heterochromatin. Marker genes are silenced when placed within kinetochore or heterochromatin domains. It is not known if fission yeast CENP-A(Cnp1) chromatin is confined to specific sequences or whether histone H3 is actively excluded. Here, we show that fission yeast CENP-A(Cnp1) can assemble on noncentromeric DNA when it is inserted within the central kinetochore domain, suggesting that in fission yeast CENP-A(Cnp1) chromatin assembly is driven by the context of a sequence rather than the underlying DNA sequence itself. Silencing in the central domain is correlated with the amount of CENP-A(Cnp1) associated with the marker gene and is also affected by the relative level of histone H3. Our analyses indicate that kinetochore integrity is dependent on maintaining the normal ratio of H3 and H4. Excess H3 competes with CENP-A(Cnp1) for assembly into central domain chromatin, resulting in less CENP-A(Cnp1) and other kinetochore proteins at centromeres causing defective kinetochore function, which is manifest as aberrant mitotic chromosome segregation. Alterations in the levels of H3 relative to H4 and CENP-A(Cnp1) influence the extent of DNA at centromeres that is packaged in CENP-A(Cnp1) chromatin and the composition of this chromatin. Thus, CENP-A(Cnp1) chromatin assembly in fission yeast exhibits plasticity with respect to the underlying sequences and is sensitive to the levels of CENP-A(Cnp1) and other core histones. Public Library of Science 2007-07 2007-07-27 /pmc/articles/PMC1934396/ /pubmed/17677001 http://dx.doi.org/10.1371/journal.pgen.0030121 Text en © 2007 Castillo et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Castillo, Araceli G
Mellone, Barbara G
Partridge, Janet F
Richardson, William
Hamilton, Georgina L
Allshire, Robin C
Pidoux, Alison L
Plasticity of Fission Yeast CENP-A Chromatin Driven by Relative Levels of Histone H3 and H4
title Plasticity of Fission Yeast CENP-A Chromatin Driven by Relative Levels of Histone H3 and H4
title_full Plasticity of Fission Yeast CENP-A Chromatin Driven by Relative Levels of Histone H3 and H4
title_fullStr Plasticity of Fission Yeast CENP-A Chromatin Driven by Relative Levels of Histone H3 and H4
title_full_unstemmed Plasticity of Fission Yeast CENP-A Chromatin Driven by Relative Levels of Histone H3 and H4
title_short Plasticity of Fission Yeast CENP-A Chromatin Driven by Relative Levels of Histone H3 and H4
title_sort plasticity of fission yeast cenp-a chromatin driven by relative levels of histone h3 and h4
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1934396/
https://www.ncbi.nlm.nih.gov/pubmed/17677001
http://dx.doi.org/10.1371/journal.pgen.0030121
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