Silencing of maternally expressed RNAs in Dlk1-Dio3 domain causes fatal vascular injury in the fetal liver

Cell Mol Life Sci. 2024 Oct 9;81(1):429. doi: 10.1007/s00018-024-05462-2.

Abstract

The mammalian imprinted Dlk1-Dio3 domain contains multiple lncRNAs, mRNAs, the largest miRNA cluster in the genome and four differentially methylated regions (DMRs), and deletion of maternally expressed RNA within this locus results in embryonic lethality, but the mechanism by which this occurs is not clear. Here, we optimized the model of maternally expressed RNAs transcription termination in the domain and found that the cause of embryonic death was apoptosis in the embryo, particularly in the liver. We generated a mouse model of maternally expressed RNAs silencing in the Dlk1-Dio3 domain by inserting a 3 × polyA termination sequence into the Gtl2 locus. By analyzing RNA-seq data of mouse embryos combined with histological analysis, we found that silencing of maternally expressed RNAs in the domain activated apoptosis, causing vascular rupture of the fetal liver, resulting in hemorrhage and injury. Mechanistically, termination of Gtl2 transcription results in the silencing of maternally expressed RNAs and activation of paternally expressed genes in the interval, and it is the gene itself rather than the IG-DMR and Gtl2-DMR that causes the aforementioned phenotypes. In conclusion, these findings illuminate a novel mechanism by which the silencing of maternally expressed RNAs within Dlk1-Dio3 domain leads to hepatic hemorrhage and embryonic death through the activation of apoptosis.

Keywords: Easi-CRISPR; Embryonic lethality; Long non-coding RNAs; Maternally expressed RNAs; Mouse.

MeSH terms

  • Animals
  • Apoptosis* / genetics
  • Calcium-Binding Proteins* / genetics
  • Calcium-Binding Proteins* / metabolism
  • DNA Methylation / genetics
  • Embryo, Mammalian / metabolism
  • Female
  • Fetus / metabolism
  • Fetus / pathology
  • Gene Expression Regulation, Developmental
  • Gene Silencing
  • Genomic Imprinting / genetics
  • Intercellular Signaling Peptides and Proteins / genetics
  • Intercellular Signaling Peptides and Proteins / metabolism
  • Iodide Peroxidase* / genetics
  • Iodide Peroxidase* / metabolism
  • Liver* / metabolism
  • Liver* / pathology
  • Male
  • Mice
  • Mice, Inbred C57BL
  • RNA, Long Noncoding* / genetics
  • RNA, Long Noncoding* / metabolism

Substances

  • Calcium-Binding Proteins
  • Dlk1 protein, mouse
  • iodothyronine deiodinase type III
  • Iodide Peroxidase
  • RNA, Long Noncoding
  • MEG3 non-coding RNA, mouse
  • Intercellular Signaling Peptides and Proteins