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Genome accessibility is widely preserved and locally modulated during mitosis

Mitosis entails global alterations to chromosome structure and nuclear architecture, concomitant with transient silencing of transcription. How cells transmit transcriptional states through mitosis remains incompletely understood. While many nuclear factors dissociate from mitotic chromosomes, the o...

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Autores principales: Hsiung, Chris C.-S., Morrissey, Christapher S., Udugama, Maheshi, Frank, Christopher L., Keller, Cheryl A., Baek, Songjoon, Giardine, Belinda, Crawford, Gregory E., Sung, Myong-Hee, Hardison, Ross C., Blobel, Gerd A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4315295/
https://www.ncbi.nlm.nih.gov/pubmed/25373146
http://dx.doi.org/10.1101/gr.180646.114
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author Hsiung, Chris C.-S.
Morrissey, Christapher S.
Udugama, Maheshi
Frank, Christopher L.
Keller, Cheryl A.
Baek, Songjoon
Giardine, Belinda
Crawford, Gregory E.
Sung, Myong-Hee
Hardison, Ross C.
Blobel, Gerd A.
author_facet Hsiung, Chris C.-S.
Morrissey, Christapher S.
Udugama, Maheshi
Frank, Christopher L.
Keller, Cheryl A.
Baek, Songjoon
Giardine, Belinda
Crawford, Gregory E.
Sung, Myong-Hee
Hardison, Ross C.
Blobel, Gerd A.
author_sort Hsiung, Chris C.-S.
collection PubMed
description Mitosis entails global alterations to chromosome structure and nuclear architecture, concomitant with transient silencing of transcription. How cells transmit transcriptional states through mitosis remains incompletely understood. While many nuclear factors dissociate from mitotic chromosomes, the observation that certain nuclear factors and chromatin features remain associated with individual loci during mitosis originated the hypothesis that such mitotically retained molecular signatures could provide transcriptional memory through mitosis. To understand the role of chromatin structure in mitotic memory, we performed the first genome-wide comparison of DNase I sensitivity of chromatin in mitosis and interphase, using a murine erythroblast model. Despite chromosome condensation during mitosis visible by microscopy, the landscape of chromatin accessibility at the macromolecular level is largely unaltered. However, mitotic chromatin accessibility is locally dynamic, with individual loci maintaining none, some, or all of their interphase accessibility. Mitotic reduction in accessibility occurs primarily within narrow, highly DNase hypersensitive sites that frequently coincide with transcription factor binding sites, whereas broader domains of moderate accessibility tend to be more stable. In mitosis, proximal promoters generally maintain their accessibility more strongly, whereas distal regulatory elements tend to lose accessibility. Large domains of DNA hypomethylation mark a subset of promoters that retain accessibility during mitosis and across many cell types in interphase. Erythroid transcription factor GATA1 exerts site-specific changes in interphase accessibility that are most pronounced at distal regulatory elements, but has little influence on mitotic accessibility. We conclude that features of open chromatin are remarkably stable through mitosis, but are modulated at the level of individual genes and regulatory elements.
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spelling pubmed-43152952015-08-01 Genome accessibility is widely preserved and locally modulated during mitosis Hsiung, Chris C.-S. Morrissey, Christapher S. Udugama, Maheshi Frank, Christopher L. Keller, Cheryl A. Baek, Songjoon Giardine, Belinda Crawford, Gregory E. Sung, Myong-Hee Hardison, Ross C. Blobel, Gerd A. Genome Res Research Mitosis entails global alterations to chromosome structure and nuclear architecture, concomitant with transient silencing of transcription. How cells transmit transcriptional states through mitosis remains incompletely understood. While many nuclear factors dissociate from mitotic chromosomes, the observation that certain nuclear factors and chromatin features remain associated with individual loci during mitosis originated the hypothesis that such mitotically retained molecular signatures could provide transcriptional memory through mitosis. To understand the role of chromatin structure in mitotic memory, we performed the first genome-wide comparison of DNase I sensitivity of chromatin in mitosis and interphase, using a murine erythroblast model. Despite chromosome condensation during mitosis visible by microscopy, the landscape of chromatin accessibility at the macromolecular level is largely unaltered. However, mitotic chromatin accessibility is locally dynamic, with individual loci maintaining none, some, or all of their interphase accessibility. Mitotic reduction in accessibility occurs primarily within narrow, highly DNase hypersensitive sites that frequently coincide with transcription factor binding sites, whereas broader domains of moderate accessibility tend to be more stable. In mitosis, proximal promoters generally maintain their accessibility more strongly, whereas distal regulatory elements tend to lose accessibility. Large domains of DNA hypomethylation mark a subset of promoters that retain accessibility during mitosis and across many cell types in interphase. Erythroid transcription factor GATA1 exerts site-specific changes in interphase accessibility that are most pronounced at distal regulatory elements, but has little influence on mitotic accessibility. We conclude that features of open chromatin are remarkably stable through mitosis, but are modulated at the level of individual genes and regulatory elements. Cold Spring Harbor Laboratory Press 2015-02 /pmc/articles/PMC4315295/ /pubmed/25373146 http://dx.doi.org/10.1101/gr.180646.114 Text en © 2015 Hsiung et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genome.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research
Hsiung, Chris C.-S.
Morrissey, Christapher S.
Udugama, Maheshi
Frank, Christopher L.
Keller, Cheryl A.
Baek, Songjoon
Giardine, Belinda
Crawford, Gregory E.
Sung, Myong-Hee
Hardison, Ross C.
Blobel, Gerd A.
Genome accessibility is widely preserved and locally modulated during mitosis
title Genome accessibility is widely preserved and locally modulated during mitosis
title_full Genome accessibility is widely preserved and locally modulated during mitosis
title_fullStr Genome accessibility is widely preserved and locally modulated during mitosis
title_full_unstemmed Genome accessibility is widely preserved and locally modulated during mitosis
title_short Genome accessibility is widely preserved and locally modulated during mitosis
title_sort genome accessibility is widely preserved and locally modulated during mitosis
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4315295/
https://www.ncbi.nlm.nih.gov/pubmed/25373146
http://dx.doi.org/10.1101/gr.180646.114
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