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An RNA-binding protein, Qki5, regulates embryonic neural stem cells through pre-mRNA processing in cell adhesion signaling

Cell type-specific transcriptomes are enabled by the action of multiple regulators, which are frequently expressed within restricted tissue regions. In the present study, we identify one such regulator, Quaking 5 (Qki5), as an RNA-binding protein (RNABP) that is expressed in early embryonic neural s...

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Autores principales: Hayakawa-Yano, Yoshika, Suyama, Satoshi, Nogami, Masahiro, Yugami, Masato, Koya, Ikuko, Furukawa, Takako, Zhou, Li, Abe, Manabu, Sakimura, Kenji, Takebayashi, Hirohide, Nakanishi, Atsushi, Okano, Hideyuki, Yano, Masato
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5693031/
https://www.ncbi.nlm.nih.gov/pubmed/29021239
http://dx.doi.org/10.1101/gad.300822.117
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author Hayakawa-Yano, Yoshika
Suyama, Satoshi
Nogami, Masahiro
Yugami, Masato
Koya, Ikuko
Furukawa, Takako
Zhou, Li
Abe, Manabu
Sakimura, Kenji
Takebayashi, Hirohide
Nakanishi, Atsushi
Okano, Hideyuki
Yano, Masato
author_facet Hayakawa-Yano, Yoshika
Suyama, Satoshi
Nogami, Masahiro
Yugami, Masato
Koya, Ikuko
Furukawa, Takako
Zhou, Li
Abe, Manabu
Sakimura, Kenji
Takebayashi, Hirohide
Nakanishi, Atsushi
Okano, Hideyuki
Yano, Masato
author_sort Hayakawa-Yano, Yoshika
collection PubMed
description Cell type-specific transcriptomes are enabled by the action of multiple regulators, which are frequently expressed within restricted tissue regions. In the present study, we identify one such regulator, Quaking 5 (Qki5), as an RNA-binding protein (RNABP) that is expressed in early embryonic neural stem cells and subsequently down-regulated during neurogenesis. mRNA sequencing analysis in neural stem cell culture indicates that Qki proteins play supporting roles in the neural stem cell transcriptome and various forms of mRNA processing that may result from regionally restricted expression and subcellular localization. Also, our in utero electroporation gain-of-function study suggests that the nuclear-type Qki isoform Qki5 supports the neural stem cell state. We next performed in vivo transcriptome-wide protein–RNA interaction mapping to search for direct targets of Qki5 and elucidate how Qki5 regulates neural stem cell function. Combined with our transcriptome analysis, this mapping analysis yielded a bona fide map of Qki5–RNA interaction at single-nucleotide resolution, the identification of 892 Qki5 direct target genes, and an accurate Qki5-dependent alternative splicing rule in the developing brain. Last, our target gene list provides the first compelling evidence that Qki5 is associated with specific biological events; namely, cell–cell adhesion. This prediction was confirmed by histological analysis of mice in which Qki proteins were genetically ablated, which revealed disruption of the apical surface of the lateral wall in the developing brain. These data collectively indicate that Qki5 regulates communication between neural stem cells by mediating numerous RNA processing events and suggest new links between splicing regulation and neural stem cell states.
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spelling pubmed-56930312018-03-15 An RNA-binding protein, Qki5, regulates embryonic neural stem cells through pre-mRNA processing in cell adhesion signaling Hayakawa-Yano, Yoshika Suyama, Satoshi Nogami, Masahiro Yugami, Masato Koya, Ikuko Furukawa, Takako Zhou, Li Abe, Manabu Sakimura, Kenji Takebayashi, Hirohide Nakanishi, Atsushi Okano, Hideyuki Yano, Masato Genes Dev Research Paper Cell type-specific transcriptomes are enabled by the action of multiple regulators, which are frequently expressed within restricted tissue regions. In the present study, we identify one such regulator, Quaking 5 (Qki5), as an RNA-binding protein (RNABP) that is expressed in early embryonic neural stem cells and subsequently down-regulated during neurogenesis. mRNA sequencing analysis in neural stem cell culture indicates that Qki proteins play supporting roles in the neural stem cell transcriptome and various forms of mRNA processing that may result from regionally restricted expression and subcellular localization. Also, our in utero electroporation gain-of-function study suggests that the nuclear-type Qki isoform Qki5 supports the neural stem cell state. We next performed in vivo transcriptome-wide protein–RNA interaction mapping to search for direct targets of Qki5 and elucidate how Qki5 regulates neural stem cell function. Combined with our transcriptome analysis, this mapping analysis yielded a bona fide map of Qki5–RNA interaction at single-nucleotide resolution, the identification of 892 Qki5 direct target genes, and an accurate Qki5-dependent alternative splicing rule in the developing brain. Last, our target gene list provides the first compelling evidence that Qki5 is associated with specific biological events; namely, cell–cell adhesion. This prediction was confirmed by histological analysis of mice in which Qki proteins were genetically ablated, which revealed disruption of the apical surface of the lateral wall in the developing brain. These data collectively indicate that Qki5 regulates communication between neural stem cells by mediating numerous RNA processing events and suggest new links between splicing regulation and neural stem cell states. Cold Spring Harbor Laboratory Press 2017-09-15 /pmc/articles/PMC5693031/ /pubmed/29021239 http://dx.doi.org/10.1101/gad.300822.117 Text en © 2017 Hayakawa-Yano et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genesdev.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research Paper
Hayakawa-Yano, Yoshika
Suyama, Satoshi
Nogami, Masahiro
Yugami, Masato
Koya, Ikuko
Furukawa, Takako
Zhou, Li
Abe, Manabu
Sakimura, Kenji
Takebayashi, Hirohide
Nakanishi, Atsushi
Okano, Hideyuki
Yano, Masato
An RNA-binding protein, Qki5, regulates embryonic neural stem cells through pre-mRNA processing in cell adhesion signaling
title An RNA-binding protein, Qki5, regulates embryonic neural stem cells through pre-mRNA processing in cell adhesion signaling
title_full An RNA-binding protein, Qki5, regulates embryonic neural stem cells through pre-mRNA processing in cell adhesion signaling
title_fullStr An RNA-binding protein, Qki5, regulates embryonic neural stem cells through pre-mRNA processing in cell adhesion signaling
title_full_unstemmed An RNA-binding protein, Qki5, regulates embryonic neural stem cells through pre-mRNA processing in cell adhesion signaling
title_short An RNA-binding protein, Qki5, regulates embryonic neural stem cells through pre-mRNA processing in cell adhesion signaling
title_sort rna-binding protein, qki5, regulates embryonic neural stem cells through pre-mrna processing in cell adhesion signaling
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5693031/
https://www.ncbi.nlm.nih.gov/pubmed/29021239
http://dx.doi.org/10.1101/gad.300822.117
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