Limb reduction in an Esco2 cohesinopathy mouse model is mediated by p53-dependent apoptosis and vascular disruption.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 39168984.
- Also identified by DOI 10.1038/s41467-024-51328-3 and PMC identifier 11339411.
- Licence recorded as CC BY-NC-ND.
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Abstract
Roberts syndrome (RBS) is an autosomal recessive disorder with profound growth deficiency and limb reduction caused by ESCO2 loss-of-function variants. Here, we elucidate the pathogenesis of limb reduction in an Esco2<sup>fl/fl</sup>;Prrx1-Cre<sup>Tg/0</sup> mouse model using bulk- and single-cell-RNA-seq and gene co-expression network analyses during embryogenesis. Our results reveal morphological and vascular defects culminating in hemorrhage of mutant limbs at E12.5. Underlying this abnormal developmental progression is a pre-apoptotic, mesenchymal cell population specific to mutant limb buds enriched for p53-related signaling beginning at E9.5. We then characterize these p53-related processes of cell cycle arrest, DNA damage, cell death, and the inflammatory leukotriene signaling pathway in vivo. In utero treatment with pifithrin-α, a p53 inhibitor, rescued the hemorrhage in mutant limbs. Lastly, significant enrichments were identified among genes associated with RBS, thalidomide embryopathy, and other genetic limb reduction disorders, suggesting a common vascular etiology among these conditions.
Medical subject headings
- Tumor Suppressor Protein p53
- Apoptosis
- Disease Models, Animal
- Cohesins
- Chromosomal Proteins, Non-Histone
- Limb Deformities, Congenital