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Establishment of heterochromatin in domain-size-dependent bursts
Methylation of histone H3K9 is a hallmark of epigenetic silencing in eukaryotes. Nucleosome modifications often rely on positive feedback where enzymes are recruited by modified nucleosomes. A combination of local and global feedbacks has been proposed to account for some dynamic properties of heter...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
National Academy of Sciences
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8053981/ https://www.ncbi.nlm.nih.gov/pubmed/33827924 http://dx.doi.org/10.1073/pnas.2022887118 |
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author | Nickels, Jan Fabio Edwards, Ashleigh Katrine Charlton, Sebastian Jespersen Mortensen, Amanda Møller Hougaard, Sif Christine Lykke Trusina, Ala Sneppen, Kim Thon, Geneviève |
author_facet | Nickels, Jan Fabio Edwards, Ashleigh Katrine Charlton, Sebastian Jespersen Mortensen, Amanda Møller Hougaard, Sif Christine Lykke Trusina, Ala Sneppen, Kim Thon, Geneviève |
author_sort | Nickels, Jan Fabio |
collection | PubMed |
description | Methylation of histone H3K9 is a hallmark of epigenetic silencing in eukaryotes. Nucleosome modifications often rely on positive feedback where enzymes are recruited by modified nucleosomes. A combination of local and global feedbacks has been proposed to account for some dynamic properties of heterochromatin, but the range at which the global feedbacks operate and the exact mode of heterochromatin propagation are not known. We investigated these questions in fission yeast. Guided by mathematical modeling, we incrementally increased the size of the mating-type region and profiled heterochromatin establishment over time. We observed exponential decays in the proportion of cells with active reporters, with rates that decreased with domain size. Establishment periods varied from a few generations in wild type to >200 generations in the longest region examined, and highly correlated silencing of two reporters located outside the nucleation center was observed. On a chromatin level, this indicates that individual regions are silenced in sudden bursts. Mathematical modeling accounts for these bursts if heterochromatic nucleosomes facilitate a deacetylation or methylation reaction at long range, in a distance-independent manner. A likely effector of three-dimensional interactions is the evolutionarily conserved Swi6(HP1) H3K9me reader, indicating the bursting behavior might be a general mode of heterochromatin propagation. |
format | Online Article Text |
id | pubmed-8053981 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | National Academy of Sciences |
record_format | MEDLINE/PubMed |
spelling | pubmed-80539812021-05-04 Establishment of heterochromatin in domain-size-dependent bursts Nickels, Jan Fabio Edwards, Ashleigh Katrine Charlton, Sebastian Jespersen Mortensen, Amanda Møller Hougaard, Sif Christine Lykke Trusina, Ala Sneppen, Kim Thon, Geneviève Proc Natl Acad Sci U S A Physical Sciences Methylation of histone H3K9 is a hallmark of epigenetic silencing in eukaryotes. Nucleosome modifications often rely on positive feedback where enzymes are recruited by modified nucleosomes. A combination of local and global feedbacks has been proposed to account for some dynamic properties of heterochromatin, but the range at which the global feedbacks operate and the exact mode of heterochromatin propagation are not known. We investigated these questions in fission yeast. Guided by mathematical modeling, we incrementally increased the size of the mating-type region and profiled heterochromatin establishment over time. We observed exponential decays in the proportion of cells with active reporters, with rates that decreased with domain size. Establishment periods varied from a few generations in wild type to >200 generations in the longest region examined, and highly correlated silencing of two reporters located outside the nucleation center was observed. On a chromatin level, this indicates that individual regions are silenced in sudden bursts. Mathematical modeling accounts for these bursts if heterochromatic nucleosomes facilitate a deacetylation or methylation reaction at long range, in a distance-independent manner. A likely effector of three-dimensional interactions is the evolutionarily conserved Swi6(HP1) H3K9me reader, indicating the bursting behavior might be a general mode of heterochromatin propagation. National Academy of Sciences 2021-04-13 2021-04-07 /pmc/articles/PMC8053981/ /pubmed/33827924 http://dx.doi.org/10.1073/pnas.2022887118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) . |
spellingShingle | Physical Sciences Nickels, Jan Fabio Edwards, Ashleigh Katrine Charlton, Sebastian Jespersen Mortensen, Amanda Møller Hougaard, Sif Christine Lykke Trusina, Ala Sneppen, Kim Thon, Geneviève Establishment of heterochromatin in domain-size-dependent bursts |
title | Establishment of heterochromatin in domain-size-dependent bursts |
title_full | Establishment of heterochromatin in domain-size-dependent bursts |
title_fullStr | Establishment of heterochromatin in domain-size-dependent bursts |
title_full_unstemmed | Establishment of heterochromatin in domain-size-dependent bursts |
title_short | Establishment of heterochromatin in domain-size-dependent bursts |
title_sort | establishment of heterochromatin in domain-size-dependent bursts |
topic | Physical Sciences |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8053981/ https://www.ncbi.nlm.nih.gov/pubmed/33827924 http://dx.doi.org/10.1073/pnas.2022887118 |
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