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Epigenetic homogeneity in histone methylation underlies sperm programming for embryonic transcription.

Published version
Peer-reviewed

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Type

Article

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Authors

Oikawa, Mami 
Simeone, Angela 
Hormanseder, Eva 
Teperek, Marta 
Gaggioli, Vincent 

Abstract

Sperm contributes genetic and epigenetic information to the embryo to efficiently support development. However, the mechanism underlying such developmental competence remains elusive. Here, we investigated whether all sperm cells have a common epigenetic configuration that primes transcriptional program for embryonic development. Using calibrated ChIP-seq, we show that remodelling of histones during spermiogenesis results in the retention of methylated histone H3 at the same genomic location in most sperm cell. This homogeneously methylated fraction of histone H3 in the sperm genome is maintained during early embryonic replication. Such methylated histone fraction resisting post-fertilisation reprogramming marks developmental genes whose expression is perturbed upon experimental reduction of histone methylation. A similar homogeneously methylated histone H3 fraction is detected in human sperm. Altogether, we uncover a conserved mechanism of paternal epigenetic information transmission to the embryo through the homogeneous retention of methylated histone in a sperm cells population.

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Keywords

Animals, Chromatin, DNA Methylation, Embryonic Development, Epigenesis, Genetic, Histones, Male, Spermatogenesis, Xenopus

Journal Title

Nature Communications

Conference Name

Journal ISSN

2041-1723
2041-1723

Volume Title

11

Publisher

Springer Nature
Sponsorship
Wellcome Trust (092096/Z/10/Z)
Cancer Research Uk (None)
Wellcome Trust (101050/Z/13/Z)
Medical Research Council (MR/K011022/1)
Wellcome Trust (108467/Z/15/Z)