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Two sets of RNAi components are required for heterochromatin formation in trans triggered by truncated transgenes

Across kingdoms, RNA interference (RNAi) has been shown to control gene expression at the transcriptional- or the post-transcriptional level. Here, we describe a mechanism which involves both aspects: truncated transgenes, which fail to produce intact mRNA, induce siRNA accumulation and silencing of...

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Autores principales: Götz, Ulrike, Marker, Simone, Cheaib, Miriam, Andresen, Karsten, Shrestha, Simon, Durai, Dilip A., Nordström, Karl J., Schulz, Marcel H., Simon, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
RNA
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4937312/
https://www.ncbi.nlm.nih.gov/pubmed/27085807
http://dx.doi.org/10.1093/nar/gkw267
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author Götz, Ulrike
Marker, Simone
Cheaib, Miriam
Andresen, Karsten
Shrestha, Simon
Durai, Dilip A.
Nordström, Karl J.
Schulz, Marcel H.
Simon, Martin
author_facet Götz, Ulrike
Marker, Simone
Cheaib, Miriam
Andresen, Karsten
Shrestha, Simon
Durai, Dilip A.
Nordström, Karl J.
Schulz, Marcel H.
Simon, Martin
author_sort Götz, Ulrike
collection PubMed
description Across kingdoms, RNA interference (RNAi) has been shown to control gene expression at the transcriptional- or the post-transcriptional level. Here, we describe a mechanism which involves both aspects: truncated transgenes, which fail to produce intact mRNA, induce siRNA accumulation and silencing of homologous loci in trans in the ciliate Paramecium. We show that silencing is achieved by co-transcriptional silencing, associated with repressive histone marks at the endogenous gene. This is accompanied by secondary siRNA accumulation, strictly limited to the open reading frame of the remote locus. Our data shows that in this mechanism, heterochromatic marks depend on a variety of RNAi components. These include RDR3 and PTIWI14 as well as a second set of components, which are also involved in post-transcriptional silencing: RDR2, PTIWI13, DCR1 and CID2. Our data indicates differential processing of nascent un-spliced and long, spliced transcripts thus suggesting a hitherto-unrecognized functional interaction between post-transcriptional and co-transcriptional RNAi. Both sets of RNAi components are required for efficient trans-acting RNAi at the chromatin level and our data indicates similar mechanisms contributing to genome wide regulation of gene expression by epigenetic mechanisms.
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spelling pubmed-49373122016-07-11 Two sets of RNAi components are required for heterochromatin formation in trans triggered by truncated transgenes Götz, Ulrike Marker, Simone Cheaib, Miriam Andresen, Karsten Shrestha, Simon Durai, Dilip A. Nordström, Karl J. Schulz, Marcel H. Simon, Martin Nucleic Acids Res RNA Across kingdoms, RNA interference (RNAi) has been shown to control gene expression at the transcriptional- or the post-transcriptional level. Here, we describe a mechanism which involves both aspects: truncated transgenes, which fail to produce intact mRNA, induce siRNA accumulation and silencing of homologous loci in trans in the ciliate Paramecium. We show that silencing is achieved by co-transcriptional silencing, associated with repressive histone marks at the endogenous gene. This is accompanied by secondary siRNA accumulation, strictly limited to the open reading frame of the remote locus. Our data shows that in this mechanism, heterochromatic marks depend on a variety of RNAi components. These include RDR3 and PTIWI14 as well as a second set of components, which are also involved in post-transcriptional silencing: RDR2, PTIWI13, DCR1 and CID2. Our data indicates differential processing of nascent un-spliced and long, spliced transcripts thus suggesting a hitherto-unrecognized functional interaction between post-transcriptional and co-transcriptional RNAi. Both sets of RNAi components are required for efficient trans-acting RNAi at the chromatin level and our data indicates similar mechanisms contributing to genome wide regulation of gene expression by epigenetic mechanisms. Oxford University Press 2016-07-08 2016-04-16 /pmc/articles/PMC4937312/ /pubmed/27085807 http://dx.doi.org/10.1093/nar/gkw267 Text en © The Author(s) 2016. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle RNA
Götz, Ulrike
Marker, Simone
Cheaib, Miriam
Andresen, Karsten
Shrestha, Simon
Durai, Dilip A.
Nordström, Karl J.
Schulz, Marcel H.
Simon, Martin
Two sets of RNAi components are required for heterochromatin formation in trans triggered by truncated transgenes
title Two sets of RNAi components are required for heterochromatin formation in trans triggered by truncated transgenes
title_full Two sets of RNAi components are required for heterochromatin formation in trans triggered by truncated transgenes
title_fullStr Two sets of RNAi components are required for heterochromatin formation in trans triggered by truncated transgenes
title_full_unstemmed Two sets of RNAi components are required for heterochromatin formation in trans triggered by truncated transgenes
title_short Two sets of RNAi components are required for heterochromatin formation in trans triggered by truncated transgenes
title_sort two sets of rnai components are required for heterochromatin formation in trans triggered by truncated transgenes
topic RNA
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4937312/
https://www.ncbi.nlm.nih.gov/pubmed/27085807
http://dx.doi.org/10.1093/nar/gkw267
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