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Sam68 promotes self-renewal and glycolytic metabolism in mouse neural progenitor cells by modulating Aldh1a3 pre-mRNA 3'-end processing

The balance between self-renewal and differentiation of neural progenitor cells (NPCs) dictates neurogenesis and proper brain development. We found that the RNA- binding protein Sam68 (Khdrbs1) is strongly expressed in neurogenic areas of the neocortex and supports the self-renewing potential of mou...

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Autores principales: La Rosa, Piergiorgio, Bielli, Pamela, Compagnucci, Claudia, Cesari, Eleonora, Volpe, Elisabetta, Farioli Vecchioli, Stefano, Sette, Claudio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5122457/
https://www.ncbi.nlm.nih.gov/pubmed/27845622
http://dx.doi.org/10.7554/eLife.20750
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author La Rosa, Piergiorgio
Bielli, Pamela
Compagnucci, Claudia
Cesari, Eleonora
Volpe, Elisabetta
Farioli Vecchioli, Stefano
Sette, Claudio
author_facet La Rosa, Piergiorgio
Bielli, Pamela
Compagnucci, Claudia
Cesari, Eleonora
Volpe, Elisabetta
Farioli Vecchioli, Stefano
Sette, Claudio
author_sort La Rosa, Piergiorgio
collection PubMed
description The balance between self-renewal and differentiation of neural progenitor cells (NPCs) dictates neurogenesis and proper brain development. We found that the RNA- binding protein Sam68 (Khdrbs1) is strongly expressed in neurogenic areas of the neocortex and supports the self-renewing potential of mouse NPCs. Knockout of Khdrbs1 constricted the pool of proliferating NPCs by accelerating their cell cycle exit and differentiation into post-mitotic neurons. Sam68 function was linked to regulation of Aldh1a3 pre-mRNA 3'-end processing. Binding of Sam68 to an intronic polyadenylation site prevents its recognition and premature transcript termination, favoring expression of a functional enzyme. The lower ALDH1A3 expression and activity in Khdrbs1(-/-) NPCs results in reduced glycolysis and clonogenicity, thus depleting the embryonic NPC pool and limiting cortical expansion. Our study identifies Sam68 as a key regulator of NPC self-renewal and establishes a novel link between modulation of ALDH1A3 expression and maintenance of high glycolytic metabolism in the developing cortex. DOI: http://dx.doi.org/10.7554/eLife.20750.001
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spelling pubmed-51224572016-11-28 Sam68 promotes self-renewal and glycolytic metabolism in mouse neural progenitor cells by modulating Aldh1a3 pre-mRNA 3'-end processing La Rosa, Piergiorgio Bielli, Pamela Compagnucci, Claudia Cesari, Eleonora Volpe, Elisabetta Farioli Vecchioli, Stefano Sette, Claudio eLife Cell Biology The balance between self-renewal and differentiation of neural progenitor cells (NPCs) dictates neurogenesis and proper brain development. We found that the RNA- binding protein Sam68 (Khdrbs1) is strongly expressed in neurogenic areas of the neocortex and supports the self-renewing potential of mouse NPCs. Knockout of Khdrbs1 constricted the pool of proliferating NPCs by accelerating their cell cycle exit and differentiation into post-mitotic neurons. Sam68 function was linked to regulation of Aldh1a3 pre-mRNA 3'-end processing. Binding of Sam68 to an intronic polyadenylation site prevents its recognition and premature transcript termination, favoring expression of a functional enzyme. The lower ALDH1A3 expression and activity in Khdrbs1(-/-) NPCs results in reduced glycolysis and clonogenicity, thus depleting the embryonic NPC pool and limiting cortical expansion. Our study identifies Sam68 as a key regulator of NPC self-renewal and establishes a novel link between modulation of ALDH1A3 expression and maintenance of high glycolytic metabolism in the developing cortex. DOI: http://dx.doi.org/10.7554/eLife.20750.001 eLife Sciences Publications, Ltd 2016-11-15 /pmc/articles/PMC5122457/ /pubmed/27845622 http://dx.doi.org/10.7554/eLife.20750 Text en © 2016, La Rosa et al http://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
La Rosa, Piergiorgio
Bielli, Pamela
Compagnucci, Claudia
Cesari, Eleonora
Volpe, Elisabetta
Farioli Vecchioli, Stefano
Sette, Claudio
Sam68 promotes self-renewal and glycolytic metabolism in mouse neural progenitor cells by modulating Aldh1a3 pre-mRNA 3'-end processing
title Sam68 promotes self-renewal and glycolytic metabolism in mouse neural progenitor cells by modulating Aldh1a3 pre-mRNA 3'-end processing
title_full Sam68 promotes self-renewal and glycolytic metabolism in mouse neural progenitor cells by modulating Aldh1a3 pre-mRNA 3'-end processing
title_fullStr Sam68 promotes self-renewal and glycolytic metabolism in mouse neural progenitor cells by modulating Aldh1a3 pre-mRNA 3'-end processing
title_full_unstemmed Sam68 promotes self-renewal and glycolytic metabolism in mouse neural progenitor cells by modulating Aldh1a3 pre-mRNA 3'-end processing
title_short Sam68 promotes self-renewal and glycolytic metabolism in mouse neural progenitor cells by modulating Aldh1a3 pre-mRNA 3'-end processing
title_sort sam68 promotes self-renewal and glycolytic metabolism in mouse neural progenitor cells by modulating aldh1a3 pre-mrna 3'-end processing
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5122457/
https://www.ncbi.nlm.nih.gov/pubmed/27845622
http://dx.doi.org/10.7554/eLife.20750
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