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Role of CxxC-finger protein 1 in establishing mouse oocyte epigenetic landscapes

During oogenesis, oocytes gain competence and subsequently undergo meiotic maturation and prepare for embryonic development; trimethylated histone H3 on lysine-4 (H3K4me3) mediates a wide range of nuclear events during these processes. Oocyte-specific knockout of CxxC-finger protein 1 (CXXC1, also k...

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Autores principales: Sha, Qian-Qian, Zhu, Ye-Zhang, Xiang, Yunlong, Yu, Jia-Li, Fan, Xiao-Ying, Li, Yan-Chu, Wu, Yun-Wen, Shen, Li, Fan, Heng-Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7969028/
https://www.ncbi.nlm.nih.gov/pubmed/33621320
http://dx.doi.org/10.1093/nar/gkab107
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author Sha, Qian-Qian
Zhu, Ye-Zhang
Xiang, Yunlong
Yu, Jia-Li
Fan, Xiao-Ying
Li, Yan-Chu
Wu, Yun-Wen
Shen, Li
Fan, Heng-Yu
author_facet Sha, Qian-Qian
Zhu, Ye-Zhang
Xiang, Yunlong
Yu, Jia-Li
Fan, Xiao-Ying
Li, Yan-Chu
Wu, Yun-Wen
Shen, Li
Fan, Heng-Yu
author_sort Sha, Qian-Qian
collection PubMed
description During oogenesis, oocytes gain competence and subsequently undergo meiotic maturation and prepare for embryonic development; trimethylated histone H3 on lysine-4 (H3K4me3) mediates a wide range of nuclear events during these processes. Oocyte-specific knockout of CxxC-finger protein 1 (CXXC1, also known as CFP1) impairs H3K4me3 accumulation and causes changes in chromatin configurations. This study investigated the changes in genomic H3K4me3 landscapes in oocytes with Cxxc1 knockout and the effects on other epigenetic factors such as the DNA methylation, H3K27me3, H2AK119ub1 and H3K36me3. H3K4me3 is overall decreased after knocking out Cxxc1, including both the promoter region and the gene body. CXXC1 and MLL2, which is another histone H3 methyltransferase, have nonoverlapping roles in mediating H3K4 trimethylation during oogenesis. Cxxc1 deletion caused a decrease in DNA methylation levels and affected H3K27me3 and H2AK119ub1 distributions, particularly at regions with high DNA methylation levels. The changes in epigenetic networks implicated by Cxxc1 deletion were correlated with the transcriptional changes in genes in the corresponding genomic regions. This study elucidates the epigenetic changes underlying the phenotypes and molecular defects in oocytes with deleted Cxxc1 and highlights the role of CXXC1 in orchestrating multiple factors that are involved in establishing the appropriate epigenetic states of maternal genome.
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spelling pubmed-79690282021-03-22 Role of CxxC-finger protein 1 in establishing mouse oocyte epigenetic landscapes Sha, Qian-Qian Zhu, Ye-Zhang Xiang, Yunlong Yu, Jia-Li Fan, Xiao-Ying Li, Yan-Chu Wu, Yun-Wen Shen, Li Fan, Heng-Yu Nucleic Acids Res Gene regulation, Chromatin and Epigenetics During oogenesis, oocytes gain competence and subsequently undergo meiotic maturation and prepare for embryonic development; trimethylated histone H3 on lysine-4 (H3K4me3) mediates a wide range of nuclear events during these processes. Oocyte-specific knockout of CxxC-finger protein 1 (CXXC1, also known as CFP1) impairs H3K4me3 accumulation and causes changes in chromatin configurations. This study investigated the changes in genomic H3K4me3 landscapes in oocytes with Cxxc1 knockout and the effects on other epigenetic factors such as the DNA methylation, H3K27me3, H2AK119ub1 and H3K36me3. H3K4me3 is overall decreased after knocking out Cxxc1, including both the promoter region and the gene body. CXXC1 and MLL2, which is another histone H3 methyltransferase, have nonoverlapping roles in mediating H3K4 trimethylation during oogenesis. Cxxc1 deletion caused a decrease in DNA methylation levels and affected H3K27me3 and H2AK119ub1 distributions, particularly at regions with high DNA methylation levels. The changes in epigenetic networks implicated by Cxxc1 deletion were correlated with the transcriptional changes in genes in the corresponding genomic regions. This study elucidates the epigenetic changes underlying the phenotypes and molecular defects in oocytes with deleted Cxxc1 and highlights the role of CXXC1 in orchestrating multiple factors that are involved in establishing the appropriate epigenetic states of maternal genome. Oxford University Press 2021-02-23 /pmc/articles/PMC7969028/ /pubmed/33621320 http://dx.doi.org/10.1093/nar/gkab107 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://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
Sha, Qian-Qian
Zhu, Ye-Zhang
Xiang, Yunlong
Yu, Jia-Li
Fan, Xiao-Ying
Li, Yan-Chu
Wu, Yun-Wen
Shen, Li
Fan, Heng-Yu
Role of CxxC-finger protein 1 in establishing mouse oocyte epigenetic landscapes
title Role of CxxC-finger protein 1 in establishing mouse oocyte epigenetic landscapes
title_full Role of CxxC-finger protein 1 in establishing mouse oocyte epigenetic landscapes
title_fullStr Role of CxxC-finger protein 1 in establishing mouse oocyte epigenetic landscapes
title_full_unstemmed Role of CxxC-finger protein 1 in establishing mouse oocyte epigenetic landscapes
title_short Role of CxxC-finger protein 1 in establishing mouse oocyte epigenetic landscapes
title_sort role of cxxc-finger protein 1 in establishing mouse oocyte epigenetic landscapes
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7969028/
https://www.ncbi.nlm.nih.gov/pubmed/33621320
http://dx.doi.org/10.1093/nar/gkab107
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