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Pcgf1 Regulates Early Neural Tube Development Through Histone Methylation in Zebrafish

The neural induction constitutes the initial step in the generation of the neural tube. Pcgf1, as one of six Pcgf paralogs, is a maternally expressed gene, but its role and mechanism in early neural induction during neural tube development have not yet been explored. In this study, we found that zeb...

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Autores principales: Li, Xinyue, Ji, Guangyu, Zhou, Juan, Du, Jingyi, Li, Xian, Shi, Wei, Hu, Yong, Zhou, Wenjuan, Hao, Aijun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7870693/
https://www.ncbi.nlm.nih.gov/pubmed/33575252
http://dx.doi.org/10.3389/fcell.2020.581636
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author Li, Xinyue
Ji, Guangyu
Zhou, Juan
Du, Jingyi
Li, Xian
Shi, Wei
Hu, Yong
Zhou, Wenjuan
Hao, Aijun
author_facet Li, Xinyue
Ji, Guangyu
Zhou, Juan
Du, Jingyi
Li, Xian
Shi, Wei
Hu, Yong
Zhou, Wenjuan
Hao, Aijun
author_sort Li, Xinyue
collection PubMed
description The neural induction constitutes the initial step in the generation of the neural tube. Pcgf1, as one of six Pcgf paralogs, is a maternally expressed gene, but its role and mechanism in early neural induction during neural tube development have not yet been explored. In this study, we found that zebrafish embryos exhibited a small head and reduced or even absence of telencephalon after inhibiting the expression of Pcgf1. Moreover, the neural induction process of zebrafish embryos was abnormally activated, and the subsequent NSC self-renewal was inhibited after injecting the Pcgf1 MO. The results of in vitro also showed that knockdown of Pcgf1 increased the expression levels of the neural markers Pax6, Pou3f1, and Zfp521, but decreased the expression levels of the pluripotent markers Oct4, Hes1, and Nanog, which further confirmed that Pcgf1 was indispensable for maintaining the pluripotency of P19 cells. To gain a better understanding of the role of Pcgf1 in early development, we analyzed mRNA profiles from Pcgf1-deficient P19 cells using RNA-seq. We found that the differentially expressed genes were enriched in many functional categories, which related to the development phenotype, and knockdown of Pcgf1 increased the expression of histone demethylases. Finally, our results showed that Pcgf1 loss-of-function decreased the levels of transcriptional repression mark H3K27me3 at the promoters of Ngn1 and Otx2, and the levels of transcriptional activation mark H3K4me3 at the promoters of Pou5f3 and Nanog. Together, our findings reveal that Pcgf1 might function as both a facilitator for pluripotent maintenance and a repressor for neural induction.
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spelling pubmed-78706932021-02-10 Pcgf1 Regulates Early Neural Tube Development Through Histone Methylation in Zebrafish Li, Xinyue Ji, Guangyu Zhou, Juan Du, Jingyi Li, Xian Shi, Wei Hu, Yong Zhou, Wenjuan Hao, Aijun Front Cell Dev Biol Cell and Developmental Biology The neural induction constitutes the initial step in the generation of the neural tube. Pcgf1, as one of six Pcgf paralogs, is a maternally expressed gene, but its role and mechanism in early neural induction during neural tube development have not yet been explored. In this study, we found that zebrafish embryos exhibited a small head and reduced or even absence of telencephalon after inhibiting the expression of Pcgf1. Moreover, the neural induction process of zebrafish embryos was abnormally activated, and the subsequent NSC self-renewal was inhibited after injecting the Pcgf1 MO. The results of in vitro also showed that knockdown of Pcgf1 increased the expression levels of the neural markers Pax6, Pou3f1, and Zfp521, but decreased the expression levels of the pluripotent markers Oct4, Hes1, and Nanog, which further confirmed that Pcgf1 was indispensable for maintaining the pluripotency of P19 cells. To gain a better understanding of the role of Pcgf1 in early development, we analyzed mRNA profiles from Pcgf1-deficient P19 cells using RNA-seq. We found that the differentially expressed genes were enriched in many functional categories, which related to the development phenotype, and knockdown of Pcgf1 increased the expression of histone demethylases. Finally, our results showed that Pcgf1 loss-of-function decreased the levels of transcriptional repression mark H3K27me3 at the promoters of Ngn1 and Otx2, and the levels of transcriptional activation mark H3K4me3 at the promoters of Pou5f3 and Nanog. Together, our findings reveal that Pcgf1 might function as both a facilitator for pluripotent maintenance and a repressor for neural induction. Frontiers Media S.A. 2021-01-26 /pmc/articles/PMC7870693/ /pubmed/33575252 http://dx.doi.org/10.3389/fcell.2020.581636 Text en Copyright © 2021 Li, Ji, Zhou, Du, Li, Shi, Hu, Zhou and Hao. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Li, Xinyue
Ji, Guangyu
Zhou, Juan
Du, Jingyi
Li, Xian
Shi, Wei
Hu, Yong
Zhou, Wenjuan
Hao, Aijun
Pcgf1 Regulates Early Neural Tube Development Through Histone Methylation in Zebrafish
title Pcgf1 Regulates Early Neural Tube Development Through Histone Methylation in Zebrafish
title_full Pcgf1 Regulates Early Neural Tube Development Through Histone Methylation in Zebrafish
title_fullStr Pcgf1 Regulates Early Neural Tube Development Through Histone Methylation in Zebrafish
title_full_unstemmed Pcgf1 Regulates Early Neural Tube Development Through Histone Methylation in Zebrafish
title_short Pcgf1 Regulates Early Neural Tube Development Through Histone Methylation in Zebrafish
title_sort pcgf1 regulates early neural tube development through histone methylation in zebrafish
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7870693/
https://www.ncbi.nlm.nih.gov/pubmed/33575252
http://dx.doi.org/10.3389/fcell.2020.581636
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