Abstract
SUMMARYGenomic imprinting and X chromosome inactivation (XCI) require epigenetic mechanisms to direct allele-specific expression. Despite their critical roles in embryonic development, how universal epigenetic regulators coordinate these specific tasks from single locus to chromosome-scale remains understudied. Here, we systematically disrupted multiple essential epigenetic pathways within polymorphic F1 zygotes to examine postimplantation effects on canonical and non-canonical genomic imprinting as well as X chromosome inactivation. We find that DNA methylation and Polycomb group repressors are both indispensable for autosomal imprinting, albeit at distinct gene sets. Moreover, the extraembryonic ectoderm relies on a broader spectrum of unique imprinting mechanisms, including non-canonical targeting of maternal endogenous retrovirus (ERV) driven promoters by G9a. We further utilize our data to identify Polycomb dependent and independent gene clusters on the imprinted X chromosome, which appears to reflect distinct domains of Xist-mediated suppression. Our data has allowed us to assemble a comprehensive inventory of the epigenetic mechanisms utilized in eutherian mammals to maintain parent-specific imprinting, including an expanded view of the placental lineage that comprises multiple unique pathways.
Publisher
Cold Spring Harbor Laboratory
Reference36 articles.
1. Andergassen, D. , Dotter, C.P. , Kulinski, T.M. , Guenzl, P.M. , Bammer, P.C. , Barlow, D.P. , Pauler, F.M. , and Hudson, Q.J. (2015). Allelome.PRO, a pipeline to define allele-specific genomic features from high-throughput sequencing data. Nucleic Acids Res. 43.
2. Genetic evidence that Nkx2.2 acts primarily downstream of Neurog3 in pancreatic endocrine lineage development
3. The Airn lncRNA does not require any DNA elements within its locus to silence distant imprinted genes;PLOS Genet,2019
4. HTSeq--a Python framework to work with high-throughput sequencing data
5. EHMT2 directs DNA methylation for efficient gene silencing in mouse embryos
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