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Uneme, Y.

Publications and source records attributed to Uneme, Y..

2 recordsLinked to original sources

Priming Epigenetic Landscape at Gene Promoters through Transcriptional Activation in Mammalian Germ Cells

In mammalian germ cells, a cycle of erasing and resetting epigenetic information is crucial for sex-specific gametogenesis and early embryogenesis. Specific chromatin states at promoters allow genes to be expressed at the appropriate time during germ cell development, however, the mechanism that establishes such characteristic chromatin states remains unclear. Here, we show that, in mouse male embryonic germ cells, promoters of developmental and housekeeping genes are selectively protected from de novo DNA methylation, coinciding with their transient upregulation and genome-wide erasure of H3K27me3. Importantly, a specific level of H3K4me3 density at the promoters serves as a potent probe that distinguishes between hypo- and hyper-DNA methylation states. Subsequent restoration of H3K27me3 contributes to establishing bivalent chromatin states that prime genes for activation at later developmental stages. These findings reveal a molecular framework shaping the epigenetic landscape at promoters with long-term effects beyond germ cell development.

genomics↗

Morc1 re-establishes heterochromatin on activated transposons and shapes the host transcriptome in gonocytes

Following reprogramming of DNA methylation, numerous transposable elements (TEs) are transiently activated in male prenatal gonocytes. Persistent expression of such TEs to adulthood leads to arrest of germ cell development. However, how these TEs are re-silenced has been unexplored. Here, we found that DNA-binding protein Morc1 re-established H3K9me3-marked heterochromatin on activated TEs, which involved methyltransferase SetDB1. Although Morc1 also triggered DNA methylation, the types of Morc1-targeted TEs for each epigenetic modification were different, suggesting that these two mechanisms were largely independent of each other. Significant overlap between TEs targeted by Morc1 and those by Miwi2, a nuclear PIWI protein, indicated that piRNA-loaded Miwi2 conferred target specificity to Morc1. Activated TEs drove transcription of adjacent genes by acting as ectopic cis-regulatory elements. Such a disrupting effect of TEs on the transcriptome was compensated by Morc1. Thus, Morc1 ensures proper interactions of TEs with host genes through re-establishment of heterochromatin in gonocytes.

bioinformatics↗