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Deregulated Expression of Mammalian lncRNA through Loss of SPT6 Induces R-Loop Formation, Replication Stress, and Cellular Senescence

Extensive tracts of the mammalian genome that lack protein-coding function are still transcribed into long noncoding RNA. While these lncRNAs are generally short lived, length restricted, and non-polyadenylated, how their expression is distinguished from protein-coding genes remains enigmatic. Surpr...

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Autores principales: Nojima, Takayuki, Tellier, Michael, Foxwell, Jonathan, Ribeiro de Almeida, Claudia, Tan-Wong, Sue Mei, Dhir, Somdutta, Dujardin, Gwendal, Dhir, Ashish, Murphy, Shona, Proudfoot, Nick J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6309921/
https://www.ncbi.nlm.nih.gov/pubmed/30449723
http://dx.doi.org/10.1016/j.molcel.2018.10.011
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author Nojima, Takayuki
Tellier, Michael
Foxwell, Jonathan
Ribeiro de Almeida, Claudia
Tan-Wong, Sue Mei
Dhir, Somdutta
Dujardin, Gwendal
Dhir, Ashish
Murphy, Shona
Proudfoot, Nick J.
author_facet Nojima, Takayuki
Tellier, Michael
Foxwell, Jonathan
Ribeiro de Almeida, Claudia
Tan-Wong, Sue Mei
Dhir, Somdutta
Dujardin, Gwendal
Dhir, Ashish
Murphy, Shona
Proudfoot, Nick J.
author_sort Nojima, Takayuki
collection PubMed
description Extensive tracts of the mammalian genome that lack protein-coding function are still transcribed into long noncoding RNA. While these lncRNAs are generally short lived, length restricted, and non-polyadenylated, how their expression is distinguished from protein-coding genes remains enigmatic. Surprisingly, depletion of the ubiquitous Pol-II-associated transcription elongation factor SPT6 promotes a redistribution of H3K36me3 histone marks from active protein coding to lncRNA genes, which correlates with increased lncRNA transcription. SPT6 knockdown also impairs the recruitment of the Integrator complex to chromatin, which results in a transcriptional termination defect for lncRNA genes. This leads to the formation of extended, polyadenylated lncRNAs that are both chromatin restricted and form increased levels of RNA:DNA hybrid (R-loops) that are associated with DNA damage. Additionally, these deregulated lncRNAs overlap with DNA replication origins leading to localized DNA replication stress and a cellular senescence phenotype. Overall, our results underline the importance of restricting lncRNA expression.
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spelling pubmed-63099212019-01-02 Deregulated Expression of Mammalian lncRNA through Loss of SPT6 Induces R-Loop Formation, Replication Stress, and Cellular Senescence Nojima, Takayuki Tellier, Michael Foxwell, Jonathan Ribeiro de Almeida, Claudia Tan-Wong, Sue Mei Dhir, Somdutta Dujardin, Gwendal Dhir, Ashish Murphy, Shona Proudfoot, Nick J. Mol Cell Article Extensive tracts of the mammalian genome that lack protein-coding function are still transcribed into long noncoding RNA. While these lncRNAs are generally short lived, length restricted, and non-polyadenylated, how their expression is distinguished from protein-coding genes remains enigmatic. Surprisingly, depletion of the ubiquitous Pol-II-associated transcription elongation factor SPT6 promotes a redistribution of H3K36me3 histone marks from active protein coding to lncRNA genes, which correlates with increased lncRNA transcription. SPT6 knockdown also impairs the recruitment of the Integrator complex to chromatin, which results in a transcriptional termination defect for lncRNA genes. This leads to the formation of extended, polyadenylated lncRNAs that are both chromatin restricted and form increased levels of RNA:DNA hybrid (R-loops) that are associated with DNA damage. Additionally, these deregulated lncRNAs overlap with DNA replication origins leading to localized DNA replication stress and a cellular senescence phenotype. Overall, our results underline the importance of restricting lncRNA expression. Cell Press 2018-12-20 /pmc/articles/PMC6309921/ /pubmed/30449723 http://dx.doi.org/10.1016/j.molcel.2018.10.011 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Nojima, Takayuki
Tellier, Michael
Foxwell, Jonathan
Ribeiro de Almeida, Claudia
Tan-Wong, Sue Mei
Dhir, Somdutta
Dujardin, Gwendal
Dhir, Ashish
Murphy, Shona
Proudfoot, Nick J.
Deregulated Expression of Mammalian lncRNA through Loss of SPT6 Induces R-Loop Formation, Replication Stress, and Cellular Senescence
title Deregulated Expression of Mammalian lncRNA through Loss of SPT6 Induces R-Loop Formation, Replication Stress, and Cellular Senescence
title_full Deregulated Expression of Mammalian lncRNA through Loss of SPT6 Induces R-Loop Formation, Replication Stress, and Cellular Senescence
title_fullStr Deregulated Expression of Mammalian lncRNA through Loss of SPT6 Induces R-Loop Formation, Replication Stress, and Cellular Senescence
title_full_unstemmed Deregulated Expression of Mammalian lncRNA through Loss of SPT6 Induces R-Loop Formation, Replication Stress, and Cellular Senescence
title_short Deregulated Expression of Mammalian lncRNA through Loss of SPT6 Induces R-Loop Formation, Replication Stress, and Cellular Senescence
title_sort deregulated expression of mammalian lncrna through loss of spt6 induces r-loop formation, replication stress, and cellular senescence
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6309921/
https://www.ncbi.nlm.nih.gov/pubmed/30449723
http://dx.doi.org/10.1016/j.molcel.2018.10.011
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