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Novel imprints in mouse blastocysts are predominantly DNA methylation independent

Santini, L.; Halbritter, F.; Titz-Teixeira, F.; Suzuki, T.; Asami, M.; Ramesmayer, J.; Ma, X.; Lackner, A.; Warr, N.; Pauler, F.; Hippenmeyer, S.; Laue, E.; Farlik, M.; Bock, C.; Beyer, A.; Perry, A. C. F.; Leeb, M.

2020-11-05 genomics
10.1101/2020.11.03.366948 bioRxiv
Show abstract

In mammals, chromatin marks at imprinted genes are asymmetrically inherited to control parentally-biased gene expression. This control is thought predominantly to involve parent-specific differentially methylated regions (DMR) in genomic DNA. However, neither parent-of-origin-specific transcription nor DMRs have been comprehensively mapped. We here address this by integrating transcriptomic and epigenomic approaches in mouse preimplantation embryos (blastocysts). Transcriptome-analysis identified 71 genes expressed with previously unknown parent-of-origin-specific expression in blastocysts (nBiX: novel blastocyst-imprinted expression). Uniparental expression of nBiX genes disappeared soon after implantation. Micro-whole-genome bisulfite sequencing (WGBS) of individual uniparental blastocysts detected 859 DMRs. Only 18% of nBiXs were associated with a DMR, whereas 60% were associated with parentally-biased H3K27me3. This suggests a major role for Polycomb-mediated imprinting in blastocysts. Five nBiX-clusters contained at least one known imprinted gene, and five novel clusters contained exclusively nBiX-genes. These data suggest a complex program of stage-specific imprinting involving different tiers of regulation.

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