CDX2 dose-dependently influences the gene regulatory network underlying human extraembryonic mesoderm development.
Emily A BulgerTodd C McDevittBenoit G BruneauPublished in: Biology open (2024)
Loss of Cdx2 in vivo leads to stunted development of the allantois, an extraembryonic mesoderm-derived structure critical for nutrient delivery and waste removal in the early embryo. Here, we investigate how CDX2 dose-dependently influences the gene regulatory network underlying extraembryonic mesoderm development. By engineering human induced pluripotent stem cells (hiPSCs) consisting of wild-type (WT), heterozygous (CDX2-Het), and homozygous null CDX2 (CDX2-KO) genotypes, differentiating these cells in a 2D gastruloid model, and subjecting these cells to single-nucleus RNA and ATAC sequencing, we identify several pathways that are dose-dependently regulated by CDX2 including VEGF and non-canonical WNT. snATAC-seq reveals that CDX2-Het cells retain a WT-like chromatin accessibility profile, suggesting accessibility alone is not sufficient to drive this variability in gene expression. Because the loss of CDX2 or TBXT phenocopy one another in vivo, we compared differentially expressed genes in our CDX2-KO to those from TBXT-KO hiPSCs differentiated in an analogous experiment. This comparison identifies several communally misregulated genes that are critical for cytoskeletal integrity and tissue permeability. Together, these results clarify how CDX2 dose-dependently regulates gene expression in the extraembryonic mesoderm and reveal pathways that may underlie the defects in vascular development and allantoic elongation seen in vivo.
Keyphrases
- gene expression
- genome wide
- induced apoptosis
- induced pluripotent stem cells
- endothelial cells
- pluripotent stem cells
- dna methylation
- cell cycle arrest
- stem cells
- oxidative stress
- cell proliferation
- early onset
- endoplasmic reticulum stress
- magnetic resonance
- heavy metals
- transcription factor
- vascular endothelial growth factor
- sewage sludge
- genome wide identification