Flipping between Polycomb repressed and active transcriptional states introduces noise in gene expression

Polycomb repressive complexes modify histones but it is unclear how changes in chromatin states alter kinetics of transcription. Here, the authors use single-cell RNAseq and ChIPseq to find that actively transcribed genes with Polycomb marks have greater cell-to-cell variation in expression.

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Autores principales: Gozde Kar, Jong Kyoung Kim, Aleksandra A. Kolodziejczyk, Kedar Nath Natarajan, Elena Torlai Triglia, Borbala Mifsud, Sarah Elderkin, John C. Marioni, Ana Pombo, Sarah A. Teichmann
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/c747a0f3ef654e3ebe5c97e9ab3dfe7f
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spelling oai:doaj.org-article:c747a0f3ef654e3ebe5c97e9ab3dfe7f2021-12-02T10:48:19ZFlipping between Polycomb repressed and active transcriptional states introduces noise in gene expression10.1038/s41467-017-00052-22041-1723https://doaj.org/article/c747a0f3ef654e3ebe5c97e9ab3dfe7f2017-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00052-2https://doaj.org/toc/2041-1723Polycomb repressive complexes modify histones but it is unclear how changes in chromatin states alter kinetics of transcription. Here, the authors use single-cell RNAseq and ChIPseq to find that actively transcribed genes with Polycomb marks have greater cell-to-cell variation in expression.Gozde KarJong Kyoung KimAleksandra A. KolodziejczykKedar Nath NatarajanElena Torlai TrigliaBorbala MifsudSarah ElderkinJohn C. MarioniAna PomboSarah A. TeichmannNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-14 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Gozde Kar
Jong Kyoung Kim
Aleksandra A. Kolodziejczyk
Kedar Nath Natarajan
Elena Torlai Triglia
Borbala Mifsud
Sarah Elderkin
John C. Marioni
Ana Pombo
Sarah A. Teichmann
Flipping between Polycomb repressed and active transcriptional states introduces noise in gene expression
description Polycomb repressive complexes modify histones but it is unclear how changes in chromatin states alter kinetics of transcription. Here, the authors use single-cell RNAseq and ChIPseq to find that actively transcribed genes with Polycomb marks have greater cell-to-cell variation in expression.
format article
author Gozde Kar
Jong Kyoung Kim
Aleksandra A. Kolodziejczyk
Kedar Nath Natarajan
Elena Torlai Triglia
Borbala Mifsud
Sarah Elderkin
John C. Marioni
Ana Pombo
Sarah A. Teichmann
author_facet Gozde Kar
Jong Kyoung Kim
Aleksandra A. Kolodziejczyk
Kedar Nath Natarajan
Elena Torlai Triglia
Borbala Mifsud
Sarah Elderkin
John C. Marioni
Ana Pombo
Sarah A. Teichmann
author_sort Gozde Kar
title Flipping between Polycomb repressed and active transcriptional states introduces noise in gene expression
title_short Flipping between Polycomb repressed and active transcriptional states introduces noise in gene expression
title_full Flipping between Polycomb repressed and active transcriptional states introduces noise in gene expression
title_fullStr Flipping between Polycomb repressed and active transcriptional states introduces noise in gene expression
title_full_unstemmed Flipping between Polycomb repressed and active transcriptional states introduces noise in gene expression
title_sort flipping between polycomb repressed and active transcriptional states introduces noise in gene expression
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/c747a0f3ef654e3ebe5c97e9ab3dfe7f
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AT jongkyoungkim flippingbetweenpolycombrepressedandactivetranscriptionalstatesintroducesnoiseingeneexpression
AT aleksandraakolodziejczyk flippingbetweenpolycombrepressedandactivetranscriptionalstatesintroducesnoiseingeneexpression
AT kedarnathnatarajan flippingbetweenpolycombrepressedandactivetranscriptionalstatesintroducesnoiseingeneexpression
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