Maternal Med12 safeguards trophoblast pluripotency and placental development
Halstead, M. M.; Goad, J.; Khan, A.; Deshmukh, R.; Rajkovic, A.
Show abstract
For a brief but critical period post-fertilization, the mammalian embryo is entirely dependent on maternal products inherited from the oocyte. Previous research showed that oocyte-specific loss of Med12, an X-linked gene and Mediator complex subunit, leads to female sterility despite normal folliculogenesis and ovulation. Here, we show that loss of maternal Med12 has minimal effect on the oocyte transcriptome and does not manifest in embryonic lethality until post-implantation. Implants derived from Med12-null oocytes demonstrate abnormal placentation at E9.5, with an overabundance of trophoblast giant cells (TGC). This phenotype associates with downregulation of trophoblast pluripotency markers (e.g. Cdx2) and activation of drivers of TGC identity (e.g. Stra13) in the E7.5 extraembryonic ectoderm, revealing a previously undescribed role for Med12 in trophoblast pluripotency maintenance. Notably, we find consistently low Med12 expression in embryos derived from Med12-null oocytes, potentially due to programmed paternal X chromosome inactivation (XCI). To isolate the consequences of maternal Med12 depletion, we introduced an autosomal Med12 transgene and show that embryonic expression of the transgene rescues development of Med12-null oocytes. We conclude that oocyte-specific deletion of Med12 produces a maternal-zygotic double knock-out in extraembryonic tissues due to paternal XCI, leading to loss of pluripotency in the trophoblast, placental malformation, and embryonic death.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Differential susceptibility of male and female germ cells to glucocorticoid-mediated signaling 96%
- Evolutionary transcriptomics implicates HAND2 in the origins of implantation and regulation of gestation length 96%
- Loss of EED in the oocyte causes initial fetal growth restriction followed by placental hyperplasia and offspring overgrowth 96%
Similar papers in this journal
- Anatomical and cellular heterogeneity in the mouse oviduct-- its potential roles in reproduction and preimplantation development 94%
- Deletion of Gremlin-2 alters estrous cyclicity and disrupts female fertility in mice 94%
- Irx3 Promotes Gap Junction Communication Between Uterine Stromal Cells to Regulate Vascularization during Embryo Implantation 93%
Similar papers in this journal
- Cell autonomous requirement of imprinted XCI inextra-embryonic polar trophoblast cells 96%
- Escort-like somatic cells mediate early mouse fetal ovarian development but surface-derived Lgr5+ cells support primordial follicles 96%
- Branched germline cysts and female-specific cyst fragmentation facilitate oocyte determination in mice 96%
Similar papers in this journal
- Disruption of folate metabolism causes poor alignment and spacing of mouse conceptuses for multiple generations 97%
- Wwc2 is a novel cell division regulator during preimplantation mouse embryo lineage formation and oogenesis 96%
- ARHGEF18/p114RhoGEF coordinates PKA/CREB signaling and actomyosin remodeling to drive trophoblast cell-cell fusion during placenta morphogenesis 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.