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  Protein translation rate determines neocortical neuron fate

Borisova, E., Newman, A. G., Couce Iglesias, M., Dannenberg, R., Schaub, T., Qin, B., et al. (2024). Protein translation rate determines neocortical neuron fate. Nature Communications, 15: 4879. doi:10.1038/s41467-024-49198-w.

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s41467-024-49198-w.pdf (Publisher version), 18MB
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Borisova, Ekaterina, Author
Newman, Andrew G., Author
Couce Iglesias, Marta, Author
Dannenberg, Rike, Author
Schaub, Theres, Author
Qin, Bo, Author
Rusanova, Alexandra, Author
Brockmann, Marisa, Author
Koch, Janina, Author
Daniels, Marieatou, Author
Turko, Paul, Author
Jahn, Olaf1, Author           
Kaplan, David R., Author
Rosário, Marta, Author
Iwawaki, Takao, Author
Spahn, Christian M. T., Author
Rosenmund, Christian, Author
Meierhofer, David, Author
Kraushar, Matthew L., Author
Tarabykin, Victor, Author
Ambrozkiewicz, Mateusz C., Author more..
Affiliations:
1Department of Molecular Neurobiology, Max Planck Institute for Multidisciplinary Sciences, Max Planck Society, ou_3350300              

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 Abstract: The mammalian neocortex comprises an enormous diversity regarding cell types, morphology, and connectivity. In this work, we discover a post-transcriptional mechanism of gene expression regulation, protein translation, as a determinant of cortical neuron identity. We find specific upregulation of protein synthesis in the progenitors of later-born neurons and show that translation rates and concomitantly protein half-lives are inherent features of cortical neuron subtypes. In a small molecule screening, we identify Ire1α as a regulator of Satb2 expression and neuronal polarity. In the developing brain, Ire1α regulates global translation rates, coordinates ribosome traffic, and the expression of eIF4A1. Furthermore, we demonstrate that the Satb2 mRNA translation requires eIF4A1 helicase activity towards its 5’-untranslated region. Altogether, we show that cortical neuron diversity is generated by mechanisms operating beyond gene transcription, with Ire1α-safeguarded proteostasis serving as an essential regulator of brain development.

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Language(s): eng - English
 Dates: 2024-06-07
 Publication Status: Published online
 Pages: -
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 Rev. Type: Peer
 Identifiers: DOI: 10.1038/s41467-024-49198-w
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Title: Nature Communications
  Abbreviation : Nat. Commun.
Source Genre: Journal
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Publ. Info: London : Nature Publishing Group
Pages: - Volume / Issue: 15 Sequence Number: 4879 Start / End Page: - Identifier: ISSN: 2041-1723
CoNE: https://pure.mpg.de/cone/journals/resource/2041-1723