Heterochromatin establishment during early mammalian development is regulated by pericentromeric RNA and characterized by non-repressive H3K9me3

哺乳动物早期发育过程中异染色质的建立受着丝粒周围 RNA 的调控,其特征是非抑制性 H3K9me3

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作者:Adam Burton, Vincent Brochard, Carmen Galan, Elias R Ruiz-Morales, Quirze Rovira, Diego Rodriguez-Terrones, Kai Kruse, Stéphanie Le Gras, Vishnu S Udayakumar, Hang Gyeong Chin, André Eid, Xiaoyu Liu, Chenfei Wang, Shaorong Gao, Sriharsa Pradhan, Juan M Vaquerizas, Nathalie Beaujean, Thomas Jenuwein,

Abstract

Following fertilization in mammals, the gametes are reprogrammed to create a totipotent zygote, a process that involves de novo establishment of chromatin domains. A major feature occurring during preimplantation development is the dramatic remodelling of constitutive heterochromatin, although the functional relevance of this is unknown. Here, we show that heterochromatin establishment relies on the stepwise expression and regulated activity of SUV39H enzymes. Enforcing precocious acquisition of constitutive heterochromatin results in compromised development and epigenetic reprogramming, which demonstrates that heterochromatin remodelling is essential for natural reprogramming at fertilization. We find that de novo H3K9 trimethylation (H3K9me3) in the paternal pronucleus after fertilization is catalysed by SUV39H2 and that pericentromeric RNAs inhibit SUV39H2 activity and reduce H3K9me3. De novo H3K9me3 is initially non-repressive for gene expression, but instead bookmarks promoters for compaction. Overall, we uncover the functional importance for the restricted transmission of constitutive heterochromatin during reprogramming and a non-repressive role for H3K9me3.

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