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The Integrator complex regulates differential snRNA processing and fate of adult stem cells in the highly regenerative planarian Schmidtea mediterranea

In multicellular organisms, cell type diversity and fate depend on specific sets of transcript isoforms generated by post-transcriptional RNA processing. Here, we used Schmidtea mediterranea, a flatworm with extraordinary regenerative abilities and a large pool of adult stem cells, as an in vivo mod...

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Autores principales: Schmidt, David, Reuter, Hanna, Hüttner, Katja, Ruhe, Larissa, Rabert, Franziska, Seebeck, Florian, Irimia, Manuel, Solana, Jordi, Bartscherer, Kerstin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6312358/
https://www.ncbi.nlm.nih.gov/pubmed/30557303
http://dx.doi.org/10.1371/journal.pgen.1007828
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author Schmidt, David
Reuter, Hanna
Hüttner, Katja
Ruhe, Larissa
Rabert, Franziska
Seebeck, Florian
Irimia, Manuel
Solana, Jordi
Bartscherer, Kerstin
author_facet Schmidt, David
Reuter, Hanna
Hüttner, Katja
Ruhe, Larissa
Rabert, Franziska
Seebeck, Florian
Irimia, Manuel
Solana, Jordi
Bartscherer, Kerstin
author_sort Schmidt, David
collection PubMed
description In multicellular organisms, cell type diversity and fate depend on specific sets of transcript isoforms generated by post-transcriptional RNA processing. Here, we used Schmidtea mediterranea, a flatworm with extraordinary regenerative abilities and a large pool of adult stem cells, as an in vivo model to study the role of Uridyl-rich small nuclear RNAs (UsnRNAs), which participate in multiple RNA processing reactions including splicing, in stem cell regulation. We characterized the planarian UsnRNA repertoire, identified stem cell-enriched variants and obtained strong evidence for an increased rate of UsnRNA 3’-processing in stem cells compared to their differentiated counterparts. Consistently, components of the Integrator complex showed stem cell-enriched expression and their depletion by RNAi disrupted UsnRNA processing resulting in global changes of splicing patterns and reduced processing of histone mRNAs. Interestingly, loss of Integrator complex function disrupted both stem cell maintenance and regeneration of tissues. Our data show that the function of the Integrator complex in UsnRNA 3’-processing is conserved in planarians and essential for maintaining their stem cell pool. We propose that cell type-specific modulation of UsnRNA composition and maturation contributes to in vivo cell fate choices, such as stem cell self-renewal in planarians.
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spelling pubmed-63123582019-01-08 The Integrator complex regulates differential snRNA processing and fate of adult stem cells in the highly regenerative planarian Schmidtea mediterranea Schmidt, David Reuter, Hanna Hüttner, Katja Ruhe, Larissa Rabert, Franziska Seebeck, Florian Irimia, Manuel Solana, Jordi Bartscherer, Kerstin PLoS Genet Research Article In multicellular organisms, cell type diversity and fate depend on specific sets of transcript isoforms generated by post-transcriptional RNA processing. Here, we used Schmidtea mediterranea, a flatworm with extraordinary regenerative abilities and a large pool of adult stem cells, as an in vivo model to study the role of Uridyl-rich small nuclear RNAs (UsnRNAs), which participate in multiple RNA processing reactions including splicing, in stem cell regulation. We characterized the planarian UsnRNA repertoire, identified stem cell-enriched variants and obtained strong evidence for an increased rate of UsnRNA 3’-processing in stem cells compared to their differentiated counterparts. Consistently, components of the Integrator complex showed stem cell-enriched expression and their depletion by RNAi disrupted UsnRNA processing resulting in global changes of splicing patterns and reduced processing of histone mRNAs. Interestingly, loss of Integrator complex function disrupted both stem cell maintenance and regeneration of tissues. Our data show that the function of the Integrator complex in UsnRNA 3’-processing is conserved in planarians and essential for maintaining their stem cell pool. We propose that cell type-specific modulation of UsnRNA composition and maturation contributes to in vivo cell fate choices, such as stem cell self-renewal in planarians. Public Library of Science 2018-12-17 /pmc/articles/PMC6312358/ /pubmed/30557303 http://dx.doi.org/10.1371/journal.pgen.1007828 Text en © 2018 Schmidt et al 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 use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Schmidt, David
Reuter, Hanna
Hüttner, Katja
Ruhe, Larissa
Rabert, Franziska
Seebeck, Florian
Irimia, Manuel
Solana, Jordi
Bartscherer, Kerstin
The Integrator complex regulates differential snRNA processing and fate of adult stem cells in the highly regenerative planarian Schmidtea mediterranea
title The Integrator complex regulates differential snRNA processing and fate of adult stem cells in the highly regenerative planarian Schmidtea mediterranea
title_full The Integrator complex regulates differential snRNA processing and fate of adult stem cells in the highly regenerative planarian Schmidtea mediterranea
title_fullStr The Integrator complex regulates differential snRNA processing and fate of adult stem cells in the highly regenerative planarian Schmidtea mediterranea
title_full_unstemmed The Integrator complex regulates differential snRNA processing and fate of adult stem cells in the highly regenerative planarian Schmidtea mediterranea
title_short The Integrator complex regulates differential snRNA processing and fate of adult stem cells in the highly regenerative planarian Schmidtea mediterranea
title_sort integrator complex regulates differential snrna processing and fate of adult stem cells in the highly regenerative planarian schmidtea mediterranea
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6312358/
https://www.ncbi.nlm.nih.gov/pubmed/30557303
http://dx.doi.org/10.1371/journal.pgen.1007828
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