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The Specification and Global Reprogramming of Histone Epigenetic Marks during Gamete Formation and Early Embryo Development in C. elegans

In addition to the DNA contributed by sperm and oocytes, embryos receive parent-specific epigenetic information that can include histone variants, histone post-translational modifications (PTMs), and DNA methylation. However, a global view of how such marks are erased or retained during gamete forma...

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Autores principales: Samson, Mark, Jow, Margaret M., Wong, Catherine C. L., Fitzpatrick, Colin, Aslanian, Aaron, Saucedo, Israel, Estrada, Rodrigo, Ito, Takashi, Park, Sung-kyu Robin, Yates, John R., Chu, Diana S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4191889/
https://www.ncbi.nlm.nih.gov/pubmed/25299455
http://dx.doi.org/10.1371/journal.pgen.1004588
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author Samson, Mark
Jow, Margaret M.
Wong, Catherine C. L.
Fitzpatrick, Colin
Aslanian, Aaron
Saucedo, Israel
Estrada, Rodrigo
Ito, Takashi
Park, Sung-kyu Robin
Yates, John R.
Chu, Diana S.
author_facet Samson, Mark
Jow, Margaret M.
Wong, Catherine C. L.
Fitzpatrick, Colin
Aslanian, Aaron
Saucedo, Israel
Estrada, Rodrigo
Ito, Takashi
Park, Sung-kyu Robin
Yates, John R.
Chu, Diana S.
author_sort Samson, Mark
collection PubMed
description In addition to the DNA contributed by sperm and oocytes, embryos receive parent-specific epigenetic information that can include histone variants, histone post-translational modifications (PTMs), and DNA methylation. However, a global view of how such marks are erased or retained during gamete formation and reprogrammed after fertilization is lacking. To focus on features conveyed by histones, we conducted a large-scale proteomic identification of histone variants and PTMs in sperm and mixed-stage embryo chromatin from C. elegans, a species that lacks conserved DNA methylation pathways. The fate of these histone marks was then tracked using immunostaining. Proteomic analysis found that sperm harbor ∼2.4 fold lower levels of histone PTMs than embryos and revealed differences in classes of PTMs between sperm and embryos. Sperm chromatin repackaging involves the incorporation of the sperm-specific histone H2A variant HTAS-1, a widespread erasure of histone acetylation, and the retention of histone methylation at sites that mark the transcriptional history of chromatin domains during spermatogenesis. After fertilization, we show HTAS-1 and 6 histone PTM marks distinguish sperm and oocyte chromatin in the new embryo and characterize distinct paternal and maternal histone remodeling events during the oocyte-to-embryo transition. These include the exchange of histone H2A that is marked by ubiquitination, retention of HTAS-1, removal of the H2A variant HTZ-1, and differential reprogramming of histone PTMs. This work identifies novel and conserved features of paternal chromatin that are specified during spermatogenesis and processed in the embryo. Furthermore, our results show that different species, even those with diverged DNA packaging and imprinting strategies, use conserved histone modification and removal mechanisms to reprogram epigenetic information.
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spelling pubmed-41918892014-10-14 The Specification and Global Reprogramming of Histone Epigenetic Marks during Gamete Formation and Early Embryo Development in C. elegans Samson, Mark Jow, Margaret M. Wong, Catherine C. L. Fitzpatrick, Colin Aslanian, Aaron Saucedo, Israel Estrada, Rodrigo Ito, Takashi Park, Sung-kyu Robin Yates, John R. Chu, Diana S. PLoS Genet Research Article In addition to the DNA contributed by sperm and oocytes, embryos receive parent-specific epigenetic information that can include histone variants, histone post-translational modifications (PTMs), and DNA methylation. However, a global view of how such marks are erased or retained during gamete formation and reprogrammed after fertilization is lacking. To focus on features conveyed by histones, we conducted a large-scale proteomic identification of histone variants and PTMs in sperm and mixed-stage embryo chromatin from C. elegans, a species that lacks conserved DNA methylation pathways. The fate of these histone marks was then tracked using immunostaining. Proteomic analysis found that sperm harbor ∼2.4 fold lower levels of histone PTMs than embryos and revealed differences in classes of PTMs between sperm and embryos. Sperm chromatin repackaging involves the incorporation of the sperm-specific histone H2A variant HTAS-1, a widespread erasure of histone acetylation, and the retention of histone methylation at sites that mark the transcriptional history of chromatin domains during spermatogenesis. After fertilization, we show HTAS-1 and 6 histone PTM marks distinguish sperm and oocyte chromatin in the new embryo and characterize distinct paternal and maternal histone remodeling events during the oocyte-to-embryo transition. These include the exchange of histone H2A that is marked by ubiquitination, retention of HTAS-1, removal of the H2A variant HTZ-1, and differential reprogramming of histone PTMs. This work identifies novel and conserved features of paternal chromatin that are specified during spermatogenesis and processed in the embryo. Furthermore, our results show that different species, even those with diverged DNA packaging and imprinting strategies, use conserved histone modification and removal mechanisms to reprogram epigenetic information. Public Library of Science 2014-10-09 /pmc/articles/PMC4191889/ /pubmed/25299455 http://dx.doi.org/10.1371/journal.pgen.1004588 Text en © 2014 Samson et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Samson, Mark
Jow, Margaret M.
Wong, Catherine C. L.
Fitzpatrick, Colin
Aslanian, Aaron
Saucedo, Israel
Estrada, Rodrigo
Ito, Takashi
Park, Sung-kyu Robin
Yates, John R.
Chu, Diana S.
The Specification and Global Reprogramming of Histone Epigenetic Marks during Gamete Formation and Early Embryo Development in C. elegans
title The Specification and Global Reprogramming of Histone Epigenetic Marks during Gamete Formation and Early Embryo Development in C. elegans
title_full The Specification and Global Reprogramming of Histone Epigenetic Marks during Gamete Formation and Early Embryo Development in C. elegans
title_fullStr The Specification and Global Reprogramming of Histone Epigenetic Marks during Gamete Formation and Early Embryo Development in C. elegans
title_full_unstemmed The Specification and Global Reprogramming of Histone Epigenetic Marks during Gamete Formation and Early Embryo Development in C. elegans
title_short The Specification and Global Reprogramming of Histone Epigenetic Marks during Gamete Formation and Early Embryo Development in C. elegans
title_sort specification and global reprogramming of histone epigenetic marks during gamete formation and early embryo development in c. elegans
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4191889/
https://www.ncbi.nlm.nih.gov/pubmed/25299455
http://dx.doi.org/10.1371/journal.pgen.1004588
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