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Cellular differentiation state modulates the mRNA export activity of SR proteins

SR proteins function in nuclear pre-mRNA processing, mRNA export, and translation. To investigate their cellular dynamics, we developed a quantitative assay, which detects differences in nucleocytoplasmic shuttling among seven canonical SR protein family members. As expected, SRSF2 and SRSF5 shuttle...

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Autores principales: Botti, Valentina, McNicoll, François, Steiner, Michaela C., Richter, Florian M., Solovyeva, Anfisa, Wegener, Marius, Schwich, Oliver D., Poser, Ina, Zarnack, Kathi, Wittig, Ilka, Neugebauer, Karla M., Müller-McNicoll, Michaela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5496613/
https://www.ncbi.nlm.nih.gov/pubmed/28592444
http://dx.doi.org/10.1083/jcb.201610051
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author Botti, Valentina
McNicoll, François
Steiner, Michaela C.
Richter, Florian M.
Solovyeva, Anfisa
Wegener, Marius
Schwich, Oliver D.
Poser, Ina
Zarnack, Kathi
Wittig, Ilka
Neugebauer, Karla M.
Müller-McNicoll, Michaela
author_facet Botti, Valentina
McNicoll, François
Steiner, Michaela C.
Richter, Florian M.
Solovyeva, Anfisa
Wegener, Marius
Schwich, Oliver D.
Poser, Ina
Zarnack, Kathi
Wittig, Ilka
Neugebauer, Karla M.
Müller-McNicoll, Michaela
author_sort Botti, Valentina
collection PubMed
description SR proteins function in nuclear pre-mRNA processing, mRNA export, and translation. To investigate their cellular dynamics, we developed a quantitative assay, which detects differences in nucleocytoplasmic shuttling among seven canonical SR protein family members. As expected, SRSF2 and SRSF5 shuttle poorly in HeLa cells but surprisingly display considerable shuttling in pluripotent murine P19 cells. Combining individual-resolution cross-linking and immunoprecipitation (iCLIP) and mass spectrometry, we show that elevated arginine methylation of SRSF5 and lower phosphorylation levels of cobound SRSF2 enhance shuttling of SRSF5 in P19 cells by modulating protein–protein and protein–RNA interactions. Moreover, SRSF5 is bound to pluripotency-specific transcripts such as Lin28a and Pou5f1/Oct4 in the cytoplasm. SRSF5 depletion reduces and overexpression increases their cytoplasmic mRNA levels, suggesting that enhanced mRNA export by SRSF5 is required for the expression of pluripotency factors. Remarkably, neural differentiation of P19 cells leads to dramatically reduced SRSF5 shuttling. Our findings indicate that posttranslational modification of SR proteins underlies the regulation of their mRNA export activities and distinguishes pluripotent from differentiated cells.
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spelling pubmed-54966132018-01-03 Cellular differentiation state modulates the mRNA export activity of SR proteins Botti, Valentina McNicoll, François Steiner, Michaela C. Richter, Florian M. Solovyeva, Anfisa Wegener, Marius Schwich, Oliver D. Poser, Ina Zarnack, Kathi Wittig, Ilka Neugebauer, Karla M. Müller-McNicoll, Michaela J Cell Biol Research Articles SR proteins function in nuclear pre-mRNA processing, mRNA export, and translation. To investigate their cellular dynamics, we developed a quantitative assay, which detects differences in nucleocytoplasmic shuttling among seven canonical SR protein family members. As expected, SRSF2 and SRSF5 shuttle poorly in HeLa cells but surprisingly display considerable shuttling in pluripotent murine P19 cells. Combining individual-resolution cross-linking and immunoprecipitation (iCLIP) and mass spectrometry, we show that elevated arginine methylation of SRSF5 and lower phosphorylation levels of cobound SRSF2 enhance shuttling of SRSF5 in P19 cells by modulating protein–protein and protein–RNA interactions. Moreover, SRSF5 is bound to pluripotency-specific transcripts such as Lin28a and Pou5f1/Oct4 in the cytoplasm. SRSF5 depletion reduces and overexpression increases their cytoplasmic mRNA levels, suggesting that enhanced mRNA export by SRSF5 is required for the expression of pluripotency factors. Remarkably, neural differentiation of P19 cells leads to dramatically reduced SRSF5 shuttling. Our findings indicate that posttranslational modification of SR proteins underlies the regulation of their mRNA export activities and distinguishes pluripotent from differentiated cells. The Rockefeller University Press 2017-07-03 /pmc/articles/PMC5496613/ /pubmed/28592444 http://dx.doi.org/10.1083/jcb.201610051 Text en © 2017 Botti et al. http://www.rupress.org/terms/https://creativecommons.org/licenses/by-nc-sa/4.0/This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms/). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 International license, as described at https://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Research Articles
Botti, Valentina
McNicoll, François
Steiner, Michaela C.
Richter, Florian M.
Solovyeva, Anfisa
Wegener, Marius
Schwich, Oliver D.
Poser, Ina
Zarnack, Kathi
Wittig, Ilka
Neugebauer, Karla M.
Müller-McNicoll, Michaela
Cellular differentiation state modulates the mRNA export activity of SR proteins
title Cellular differentiation state modulates the mRNA export activity of SR proteins
title_full Cellular differentiation state modulates the mRNA export activity of SR proteins
title_fullStr Cellular differentiation state modulates the mRNA export activity of SR proteins
title_full_unstemmed Cellular differentiation state modulates the mRNA export activity of SR proteins
title_short Cellular differentiation state modulates the mRNA export activity of SR proteins
title_sort cellular differentiation state modulates the mrna export activity of sr proteins
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5496613/
https://www.ncbi.nlm.nih.gov/pubmed/28592444
http://dx.doi.org/10.1083/jcb.201610051
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