Nuclear compartmentalization of TERT mRNA and TUG1 lncRNA is driven by intron retention

RNA localization plays an important role in transcriptome regulation. The majority of TERT transcripts are detected in the nucleus and TUG1 lncRNAs in both the nucleus and cytoplasm. Here, the authors combine single-cell RNA imaging, antisense oligonucleotides and splicing analyses to show that rete...

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Autores principales: Gabrijela Dumbović, Ulrich Braunschweig, Heera K. Langner, Michael Smallegan, Josep Biayna, Evan P. Hass, Katarzyna Jastrzebska, Benjamin Blencowe, Thomas R. Cech, Marvin H. Caruthers, John L. Rinn
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/0a69eec1edfb49478cd0ef2274c07334
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spelling oai:doaj.org-article:0a69eec1edfb49478cd0ef2274c073342021-12-02T15:56:54ZNuclear compartmentalization of TERT mRNA and TUG1 lncRNA is driven by intron retention10.1038/s41467-021-23221-w2041-1723https://doaj.org/article/0a69eec1edfb49478cd0ef2274c073342021-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-23221-whttps://doaj.org/toc/2041-1723RNA localization plays an important role in transcriptome regulation. The majority of TERT transcripts are detected in the nucleus and TUG1 lncRNAs in both the nucleus and cytoplasm. Here, the authors combine single-cell RNA imaging, antisense oligonucleotides and splicing analyses to show that retention of specific introns drives stable compartmentalization of TERT and TUG1 transcripts in the nucleus, and that splicing of TERT retained introns is mitotically regulated.Gabrijela DumbovićUlrich BraunschweigHeera K. LangnerMichael SmalleganJosep BiaynaEvan P. HassKatarzyna JastrzebskaBenjamin BlencoweThomas R. CechMarvin H. CaruthersJohn L. RinnNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-19 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Gabrijela Dumbović
Ulrich Braunschweig
Heera K. Langner
Michael Smallegan
Josep Biayna
Evan P. Hass
Katarzyna Jastrzebska
Benjamin Blencowe
Thomas R. Cech
Marvin H. Caruthers
John L. Rinn
Nuclear compartmentalization of TERT mRNA and TUG1 lncRNA is driven by intron retention
description RNA localization plays an important role in transcriptome regulation. The majority of TERT transcripts are detected in the nucleus and TUG1 lncRNAs in both the nucleus and cytoplasm. Here, the authors combine single-cell RNA imaging, antisense oligonucleotides and splicing analyses to show that retention of specific introns drives stable compartmentalization of TERT and TUG1 transcripts in the nucleus, and that splicing of TERT retained introns is mitotically regulated.
format article
author Gabrijela Dumbović
Ulrich Braunschweig
Heera K. Langner
Michael Smallegan
Josep Biayna
Evan P. Hass
Katarzyna Jastrzebska
Benjamin Blencowe
Thomas R. Cech
Marvin H. Caruthers
John L. Rinn
author_facet Gabrijela Dumbović
Ulrich Braunschweig
Heera K. Langner
Michael Smallegan
Josep Biayna
Evan P. Hass
Katarzyna Jastrzebska
Benjamin Blencowe
Thomas R. Cech
Marvin H. Caruthers
John L. Rinn
author_sort Gabrijela Dumbović
title Nuclear compartmentalization of TERT mRNA and TUG1 lncRNA is driven by intron retention
title_short Nuclear compartmentalization of TERT mRNA and TUG1 lncRNA is driven by intron retention
title_full Nuclear compartmentalization of TERT mRNA and TUG1 lncRNA is driven by intron retention
title_fullStr Nuclear compartmentalization of TERT mRNA and TUG1 lncRNA is driven by intron retention
title_full_unstemmed Nuclear compartmentalization of TERT mRNA and TUG1 lncRNA is driven by intron retention
title_sort nuclear compartmentalization of tert mrna and tug1 lncrna is driven by intron retention
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/0a69eec1edfb49478cd0ef2274c07334
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