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The DNMT3A ADD domain is required for efficient de novo DNA methylation and maternal imprinting in mouse oocytes

Establishment of a proper DNA methylation landscape in mammalian oocytes is important for maternal imprinting and embryonic development. De novo DNA methylation in oocytes is mediated by the DNA methyltransferase DNMT3A, which has an ATRX-DNMT3-DNMT3L (ADD) domain that interacts with histone H3 tail...

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Autores principales: Uehara, Ryuji, Au Yeung, Wan Kin, Toriyama, Keisuke, Ohishi, Hiroaki, Kubo, Naoki, Toh, Hidehiro, Suetake, Isao, Shirane, Kenjiro, Sasaki, Hiroyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10393158/
https://www.ncbi.nlm.nih.gov/pubmed/37527244
http://dx.doi.org/10.1371/journal.pgen.1010855
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author Uehara, Ryuji
Au Yeung, Wan Kin
Toriyama, Keisuke
Ohishi, Hiroaki
Kubo, Naoki
Toh, Hidehiro
Suetake, Isao
Shirane, Kenjiro
Sasaki, Hiroyuki
author_facet Uehara, Ryuji
Au Yeung, Wan Kin
Toriyama, Keisuke
Ohishi, Hiroaki
Kubo, Naoki
Toh, Hidehiro
Suetake, Isao
Shirane, Kenjiro
Sasaki, Hiroyuki
author_sort Uehara, Ryuji
collection PubMed
description Establishment of a proper DNA methylation landscape in mammalian oocytes is important for maternal imprinting and embryonic development. De novo DNA methylation in oocytes is mediated by the DNA methyltransferase DNMT3A, which has an ATRX-DNMT3-DNMT3L (ADD) domain that interacts with histone H3 tail unmethylated at lysine-4 (H3K4me0). The domain normally blocks the methyltransferase domain via intramolecular interaction and binding to histone H3K4me0 releases the autoinhibition. However, H3K4me0 is widespread in chromatin and the role of the ADD-histone interaction has not been studied in vivo. We herein show that amino-acid substitutions in the ADD domain of mouse DNMT3A cause dwarfism. Oocytes derived from homozygous females show mosaic loss of CG methylation and almost complete loss of non-CG methylation. Embryos derived from such oocytes die in mid-to-late gestation, with stochastic and often all-or-none-type CG-methylation loss at imprinting control regions and misexpression of the linked genes. The stochastic loss is a two-step process, with loss occurring in cleavage-stage embryos and regaining occurring after implantation. These results highlight an important role for the ADD domain in efficient, and likely processive, de novo CG methylation and pose a model for stochastic inheritance of epigenetic perturbations in germ cells to the next generation.
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spelling pubmed-103931582023-08-02 The DNMT3A ADD domain is required for efficient de novo DNA methylation and maternal imprinting in mouse oocytes Uehara, Ryuji Au Yeung, Wan Kin Toriyama, Keisuke Ohishi, Hiroaki Kubo, Naoki Toh, Hidehiro Suetake, Isao Shirane, Kenjiro Sasaki, Hiroyuki PLoS Genet Research Article Establishment of a proper DNA methylation landscape in mammalian oocytes is important for maternal imprinting and embryonic development. De novo DNA methylation in oocytes is mediated by the DNA methyltransferase DNMT3A, which has an ATRX-DNMT3-DNMT3L (ADD) domain that interacts with histone H3 tail unmethylated at lysine-4 (H3K4me0). The domain normally blocks the methyltransferase domain via intramolecular interaction and binding to histone H3K4me0 releases the autoinhibition. However, H3K4me0 is widespread in chromatin and the role of the ADD-histone interaction has not been studied in vivo. We herein show that amino-acid substitutions in the ADD domain of mouse DNMT3A cause dwarfism. Oocytes derived from homozygous females show mosaic loss of CG methylation and almost complete loss of non-CG methylation. Embryos derived from such oocytes die in mid-to-late gestation, with stochastic and often all-or-none-type CG-methylation loss at imprinting control regions and misexpression of the linked genes. The stochastic loss is a two-step process, with loss occurring in cleavage-stage embryos and regaining occurring after implantation. These results highlight an important role for the ADD domain in efficient, and likely processive, de novo CG methylation and pose a model for stochastic inheritance of epigenetic perturbations in germ cells to the next generation. Public Library of Science 2023-08-01 /pmc/articles/PMC10393158/ /pubmed/37527244 http://dx.doi.org/10.1371/journal.pgen.1010855 Text en © 2023 Uehara et al 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 use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Uehara, Ryuji
Au Yeung, Wan Kin
Toriyama, Keisuke
Ohishi, Hiroaki
Kubo, Naoki
Toh, Hidehiro
Suetake, Isao
Shirane, Kenjiro
Sasaki, Hiroyuki
The DNMT3A ADD domain is required for efficient de novo DNA methylation and maternal imprinting in mouse oocytes
title The DNMT3A ADD domain is required for efficient de novo DNA methylation and maternal imprinting in mouse oocytes
title_full The DNMT3A ADD domain is required for efficient de novo DNA methylation and maternal imprinting in mouse oocytes
title_fullStr The DNMT3A ADD domain is required for efficient de novo DNA methylation and maternal imprinting in mouse oocytes
title_full_unstemmed The DNMT3A ADD domain is required for efficient de novo DNA methylation and maternal imprinting in mouse oocytes
title_short The DNMT3A ADD domain is required for efficient de novo DNA methylation and maternal imprinting in mouse oocytes
title_sort dnmt3a add domain is required for efficient de novo dna methylation and maternal imprinting in mouse oocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10393158/
https://www.ncbi.nlm.nih.gov/pubmed/37527244
http://dx.doi.org/10.1371/journal.pgen.1010855
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