Key result
Endocardial Tie2 attenuation causes mid-gestation lethality due to hyperplastic but simplified trabecular meshwork defects.
Why the study?
The ang1-Tie2 pathway is required for normal vascular development, but its molecular effectors are not well-defined during cardiac ontogeny.
Endocardial Tie2 is essential for normal ventricular chamber formation by supporting endothelial cell proliferation and sprouting while preventing hypertrabeculation via suppression of retinoic acid signaling.
Endocardial Tie2 is essential for murine trabecular patterning; leaves open any role in human congenital heart disease.
The ang1-Tie2 pathway is required for normal vascular development, but its molecular effectors are not well-defined during cardiac ontogeny. Here we show that endocardial specific attenuation of Tie2 results in mid-gestation lethality due to heart defects associated with a hyperplastic but simplified trabecular meshwork (fewer but thicker trabeculae). Reduced proliferation and production of endocardial cells (ECs) following endocardial loss of Tie2 results in decreased endocardial sprouting required for trabecular assembly and extension. The hyperplastic trabeculae result from enhanced proliferation of trabecular cardiomyocyte (CMs), which is associated with upregulation of Bmp10, increased retinoic acid (RA) signaling, and Erk1/2 hyperphosphorylation in the myocardium. Intriguingly, myocardial phenotypes in Tie2-cko hearts could be partially rescued by inhibiting in utero RA signaling with pan-retinoic acid receptor antagonist BMS493. These findings reveal two complimentary functions of endocardial Tie2 during ventricular chamber formation: ensuring normal trabeculation by supporting EC proliferation and sprouting, and preventing hypertrabeculation via suppression of RA signaling in trabecular CMs.
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Qu et al. (2019) studied Cardiac ontogeny and ventricular chamber formation. Endocardial specific attenuation of Tie2 vs. Normal Tie2 expression (wild-type) was evaluated on Mid-gestation lethality and heart defects. Endocardial specific attenuation of Tie2 resulted in mid-gestation lethality due to heart defects characterized by a hyperplastic but simplified trabecular meshwork.
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