The upstream 5′ splice site remains associated to the transcription machinery during intron synthesis

We know that most splicing reactions take place co-transcriptionally, but how the transcription machinery facilitate splicing of introns is unknown. Here the authors show that the 5′ splice site remains associated with the transcription machinery during intron synthesis through U1 snRNP, providing a...

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Autores principales: Yodfat Leader, Galit Lev Maor, Matan Sorek, Ronna Shayevitch, Maram Hussein, Ofir Hameiri, Luna Tammer, Jonathan Zonszain, Ifat Keydar, Dror Hollander, Eran Meshorer, Gil Ast
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/07b1b9cd06be45f09e95094071279256
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spelling oai:doaj.org-article:07b1b9cd06be45f09e950940712792562021-12-02T16:23:43ZThe upstream 5′ splice site remains associated to the transcription machinery during intron synthesis10.1038/s41467-021-24774-62041-1723https://doaj.org/article/07b1b9cd06be45f09e950940712792562021-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24774-6https://doaj.org/toc/2041-1723We know that most splicing reactions take place co-transcriptionally, but how the transcription machinery facilitate splicing of introns is unknown. Here the authors show that the 5′ splice site remains associated with the transcription machinery during intron synthesis through U1 snRNP, providing a basis for the rapid splicing reaction of introns.Yodfat LeaderGalit Lev MaorMatan SorekRonna ShayevitchMaram HusseinOfir HameiriLuna TammerJonathan ZonszainIfat KeydarDror HollanderEran MeshorerGil AstNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-11 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yodfat Leader
Galit Lev Maor
Matan Sorek
Ronna Shayevitch
Maram Hussein
Ofir Hameiri
Luna Tammer
Jonathan Zonszain
Ifat Keydar
Dror Hollander
Eran Meshorer
Gil Ast
The upstream 5′ splice site remains associated to the transcription machinery during intron synthesis
description We know that most splicing reactions take place co-transcriptionally, but how the transcription machinery facilitate splicing of introns is unknown. Here the authors show that the 5′ splice site remains associated with the transcription machinery during intron synthesis through U1 snRNP, providing a basis for the rapid splicing reaction of introns.
format article
author Yodfat Leader
Galit Lev Maor
Matan Sorek
Ronna Shayevitch
Maram Hussein
Ofir Hameiri
Luna Tammer
Jonathan Zonszain
Ifat Keydar
Dror Hollander
Eran Meshorer
Gil Ast
author_facet Yodfat Leader
Galit Lev Maor
Matan Sorek
Ronna Shayevitch
Maram Hussein
Ofir Hameiri
Luna Tammer
Jonathan Zonszain
Ifat Keydar
Dror Hollander
Eran Meshorer
Gil Ast
author_sort Yodfat Leader
title The upstream 5′ splice site remains associated to the transcription machinery during intron synthesis
title_short The upstream 5′ splice site remains associated to the transcription machinery during intron synthesis
title_full The upstream 5′ splice site remains associated to the transcription machinery during intron synthesis
title_fullStr The upstream 5′ splice site remains associated to the transcription machinery during intron synthesis
title_full_unstemmed The upstream 5′ splice site remains associated to the transcription machinery during intron synthesis
title_sort upstream 5′ splice site remains associated to the transcription machinery during intron synthesis
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/07b1b9cd06be45f09e95094071279256
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