Back

Expression of mutant TIE2 p.L914F during mouse development causes embryonic lethality and defects in vascular remodeling

Bischoff, L. J.; Schrenk, S.; Soroko, K.; Boscolo, E.

2025-07-30 developmental biology
10.1101/2025.07.24.666614 bioRxiv
Show abstract

BackgroundSporadic venous malformation (VM) is associated with the hyperactivating p.L914F mutation in TIE2, a receptor tyrosine kinase essential for vascular development. This mutation is not found in hereditary VM, suggesting incompatibility with life when expressed during early vascular development. Therefore, we utilized a novel genetic mouse model that expresses TIE2 p.L914F to determine the phenotypical effects of this mutation during development. ResultsB6-Tg(Rosa26-TIE2L914F)EBos (TIE2L914F) mice were generated and then validated for the presence of the transgene. The constitutive endothelial-specific Tie2-Cre line was used to activate expression of the mutant gene during early embryonic development. Tie2-Cre;TIE2L914Fembryos experienced lethality at approximately embryonic day (E)9.5. 3-dimensional imaging of embryos and yolk sacs revealed impaired vascular remodeling in mutant animals, resulting in malformed vasculature with disorganized, dilated, and non-functional blood vessels. The abnormal vascular phenotype was not associated with total loss of erythroid cells or increased cell proliferation. ConclusionsThe TIE2L914F mice used in this study represent a novel genetic model of TIE2 p.L914F-driven vascular disease. This study provides the first experimental evidence that this mutation is incompatible with early prenatal development due to its deleterious effects on the vasculature, illustrating the vital role of TIE2 signaling during vessel development and remodeling.

Matching journals

The top 8 journals account for 50% of the predicted probability mass.

50% of probability mass above

"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.