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Srsf1 and Elavl1 act antagonistically on neuronal fate choice in the developing neocortex by controlling TrkC receptor isoform expression

The seat of higher-order cognitive abilities in mammals, the neocortex, is a complex structure, organized in several layers. The different subtypes of principal neurons are distributed in precise ratios and at specific positions in these layers and are generated by the same neural progenitor cells (...

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Autores principales: Weber, A Ioana, Parthasarathy, Srinivas, Borisova, Ekaterina, Epifanova, Ekaterina, Preußner, Marco, Rusanova, Alexandra, Ambrozkiewicz, Mateusz C, Bessa, Paraskevi, Newman, Andrew G, Müller, Lisa, Schaal, Heiner, Heyd, Florian, Tarabykin, Victor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10602877/
https://www.ncbi.nlm.nih.gov/pubmed/37697438
http://dx.doi.org/10.1093/nar/gkad703
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author Weber, A Ioana
Parthasarathy, Srinivas
Borisova, Ekaterina
Epifanova, Ekaterina
Preußner, Marco
Rusanova, Alexandra
Ambrozkiewicz, Mateusz C
Bessa, Paraskevi
Newman, Andrew G
Müller, Lisa
Schaal, Heiner
Heyd, Florian
Tarabykin, Victor
author_facet Weber, A Ioana
Parthasarathy, Srinivas
Borisova, Ekaterina
Epifanova, Ekaterina
Preußner, Marco
Rusanova, Alexandra
Ambrozkiewicz, Mateusz C
Bessa, Paraskevi
Newman, Andrew G
Müller, Lisa
Schaal, Heiner
Heyd, Florian
Tarabykin, Victor
author_sort Weber, A Ioana
collection PubMed
description The seat of higher-order cognitive abilities in mammals, the neocortex, is a complex structure, organized in several layers. The different subtypes of principal neurons are distributed in precise ratios and at specific positions in these layers and are generated by the same neural progenitor cells (NPCs), steered by a spatially and temporally specified combination of molecular cues that are incompletely understood. Recently, we discovered that an alternatively spliced isoform of the TrkC receptor lacking the kinase domain, TrkC-T1, is a determinant of the corticofugal projection neuron (CFuPN) fate. Here, we show that the finely tuned balance between TrkC-T1 and the better known, kinase domain-containing isoform, TrkC-TK+, is cell type-specific in the developing cortex and established through the antagonistic actions of two RNA-binding proteins, Srsf1 and Elavl1. Moreover, our data show that Srsf1 promotes the CFuPN fate and Elavl1 promotes the callosal projection neuron (CPN) fate in vivo via regulating the distinct ratios of TrkC-T1 to TrkC-TK+. Taken together, we connect spatio-temporal expression of Srsf1 and Elavl1 in the developing neocortex with the regulation of TrkC alternative splicing and transcript stability and neuronal fate choice, thus adding to the mechanistic and functional understanding of alternative splicing in vivo.
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spelling pubmed-106028772023-10-28 Srsf1 and Elavl1 act antagonistically on neuronal fate choice in the developing neocortex by controlling TrkC receptor isoform expression Weber, A Ioana Parthasarathy, Srinivas Borisova, Ekaterina Epifanova, Ekaterina Preußner, Marco Rusanova, Alexandra Ambrozkiewicz, Mateusz C Bessa, Paraskevi Newman, Andrew G Müller, Lisa Schaal, Heiner Heyd, Florian Tarabykin, Victor Nucleic Acids Res Gene regulation, Chromatin and Epigenetics The seat of higher-order cognitive abilities in mammals, the neocortex, is a complex structure, organized in several layers. The different subtypes of principal neurons are distributed in precise ratios and at specific positions in these layers and are generated by the same neural progenitor cells (NPCs), steered by a spatially and temporally specified combination of molecular cues that are incompletely understood. Recently, we discovered that an alternatively spliced isoform of the TrkC receptor lacking the kinase domain, TrkC-T1, is a determinant of the corticofugal projection neuron (CFuPN) fate. Here, we show that the finely tuned balance between TrkC-T1 and the better known, kinase domain-containing isoform, TrkC-TK+, is cell type-specific in the developing cortex and established through the antagonistic actions of two RNA-binding proteins, Srsf1 and Elavl1. Moreover, our data show that Srsf1 promotes the CFuPN fate and Elavl1 promotes the callosal projection neuron (CPN) fate in vivo via regulating the distinct ratios of TrkC-T1 to TrkC-TK+. Taken together, we connect spatio-temporal expression of Srsf1 and Elavl1 in the developing neocortex with the regulation of TrkC alternative splicing and transcript stability and neuronal fate choice, thus adding to the mechanistic and functional understanding of alternative splicing in vivo. Oxford University Press 2023-09-11 /pmc/articles/PMC10602877/ /pubmed/37697438 http://dx.doi.org/10.1093/nar/gkad703 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Gene regulation, Chromatin and Epigenetics
Weber, A Ioana
Parthasarathy, Srinivas
Borisova, Ekaterina
Epifanova, Ekaterina
Preußner, Marco
Rusanova, Alexandra
Ambrozkiewicz, Mateusz C
Bessa, Paraskevi
Newman, Andrew G
Müller, Lisa
Schaal, Heiner
Heyd, Florian
Tarabykin, Victor
Srsf1 and Elavl1 act antagonistically on neuronal fate choice in the developing neocortex by controlling TrkC receptor isoform expression
title Srsf1 and Elavl1 act antagonistically on neuronal fate choice in the developing neocortex by controlling TrkC receptor isoform expression
title_full Srsf1 and Elavl1 act antagonistically on neuronal fate choice in the developing neocortex by controlling TrkC receptor isoform expression
title_fullStr Srsf1 and Elavl1 act antagonistically on neuronal fate choice in the developing neocortex by controlling TrkC receptor isoform expression
title_full_unstemmed Srsf1 and Elavl1 act antagonistically on neuronal fate choice in the developing neocortex by controlling TrkC receptor isoform expression
title_short Srsf1 and Elavl1 act antagonistically on neuronal fate choice in the developing neocortex by controlling TrkC receptor isoform expression
title_sort srsf1 and elavl1 act antagonistically on neuronal fate choice in the developing neocortex by controlling trkc receptor isoform expression
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10602877/
https://www.ncbi.nlm.nih.gov/pubmed/37697438
http://dx.doi.org/10.1093/nar/gkad703
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