CTCF and transcription influence chromatin structure re-configuration after mitosis
Higher-order chromatin structure is temporarily disrupted during mitosis. Here the authors show that loss of the architectural factor CTCF results in failure to form structural loops and leads to inappropriate cis-regulatory contacts and alterations of compartmental interactions after mitosis. Furth...
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Nature Portfolio
2021
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oai:doaj.org-article:08ba3d74d9e640238388f116decac99f2021-12-02T19:02:28ZCTCF and transcription influence chromatin structure re-configuration after mitosis10.1038/s41467-021-25418-52041-1723https://doaj.org/article/08ba3d74d9e640238388f116decac99f2021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25418-5https://doaj.org/toc/2041-1723Higher-order chromatin structure is temporarily disrupted during mitosis. Here the authors show that loss of the architectural factor CTCF results in failure to form structural loops and leads to inappropriate cis-regulatory contacts and alterations of compartmental interactions after mitosis. Furthermore, they show global 3D architecture is set up without transcription, but that transcription contributes to proper gene domain formation.Haoyue ZhangJessica LamDi ZhangYemin LanMarit W. VermuntCheryl A. KellerBelinda GiardineRoss C. HardisonGerd A. BlobelNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-16 (2021) |
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Science Q Haoyue Zhang Jessica Lam Di Zhang Yemin Lan Marit W. Vermunt Cheryl A. Keller Belinda Giardine Ross C. Hardison Gerd A. Blobel CTCF and transcription influence chromatin structure re-configuration after mitosis |
description |
Higher-order chromatin structure is temporarily disrupted during mitosis. Here the authors show that loss of the architectural factor CTCF results in failure to form structural loops and leads to inappropriate cis-regulatory contacts and alterations of compartmental interactions after mitosis. Furthermore, they show global 3D architecture is set up without transcription, but that transcription contributes to proper gene domain formation. |
format |
article |
author |
Haoyue Zhang Jessica Lam Di Zhang Yemin Lan Marit W. Vermunt Cheryl A. Keller Belinda Giardine Ross C. Hardison Gerd A. Blobel |
author_facet |
Haoyue Zhang Jessica Lam Di Zhang Yemin Lan Marit W. Vermunt Cheryl A. Keller Belinda Giardine Ross C. Hardison Gerd A. Blobel |
author_sort |
Haoyue Zhang |
title |
CTCF and transcription influence chromatin structure re-configuration after mitosis |
title_short |
CTCF and transcription influence chromatin structure re-configuration after mitosis |
title_full |
CTCF and transcription influence chromatin structure re-configuration after mitosis |
title_fullStr |
CTCF and transcription influence chromatin structure re-configuration after mitosis |
title_full_unstemmed |
CTCF and transcription influence chromatin structure re-configuration after mitosis |
title_sort |
ctcf and transcription influence chromatin structure re-configuration after mitosis |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/08ba3d74d9e640238388f116decac99f |
work_keys_str_mv |
AT haoyuezhang ctcfandtranscriptioninfluencechromatinstructurereconfigurationaftermitosis AT jessicalam ctcfandtranscriptioninfluencechromatinstructurereconfigurationaftermitosis AT dizhang ctcfandtranscriptioninfluencechromatinstructurereconfigurationaftermitosis AT yeminlan ctcfandtranscriptioninfluencechromatinstructurereconfigurationaftermitosis AT maritwvermunt ctcfandtranscriptioninfluencechromatinstructurereconfigurationaftermitosis AT cherylakeller ctcfandtranscriptioninfluencechromatinstructurereconfigurationaftermitosis AT belindagiardine ctcfandtranscriptioninfluencechromatinstructurereconfigurationaftermitosis AT rosschardison ctcfandtranscriptioninfluencechromatinstructurereconfigurationaftermitosis AT gerdablobel ctcfandtranscriptioninfluencechromatinstructurereconfigurationaftermitosis |
_version_ |
1718377247827558400 |