Key result
Disrupting endothelial calcineurin-NFAT signaling via cyclosporin A or genetic deletion halts embryonic coronary angiogenesis.
Why the study?
The specific temporal and spatial roles of calcineurin-NFAT signaling in coronary vessel formation during embryogenesis were not fully defined.
Calcineurin-NFAT signaling in endothelial cells is required within a specific temporal window (E10.5-E11.5) for normal coronary vessel angiogenesis in mice.
No immediate clinical implications; extends mechanistic insight into embryonic coronary vessel formation in mice.
Formation of the coronary vasculature requires reciprocal signaling between endothelial, epicardially derived smooth muscle and underlying myocardial cells. Our studies show that calcineurin-NFAT signaling functions in endothelial cells within specific time windows to regulate coronary vessel development. Mouse embryos exposed to cyclosporin A (CsA), which inhibits calcineurin phosphatase activity, failed to develop normal coronary vasculature. To determine the cellular site at which calcineurin functions for coronary angiogenesis, we deleted calcineurin in endothelial, epicardial and myocardial cells. Disruption of calcineurin-NFAT signaling in endothelial cells resulted in the failure of coronary angiogenesis, recapitulating the coronary phenotype observed in CsA-treated embryos. By contrast, deletion of calcineurin in either epicardial or myocardial cells had no effect on coronary vasculature during early embryogenesis. To define the temporal requirement for NFAT signaling, we treated developing embryos with CsA at overlapping windows from E9.5 to E12.5 and examined coronary development at E12.5. These experiments demonstrated that calcineurin-NFAT signaling functions between E10.5 and E11.5 to regulate coronary angiogenesis. Consistent with these in vivo observations, endothelial cells exposed to CsA within specific time windows in tissue culture were unable to form tubular structures and their cellular responses to VEGF-A were blunted. Thus, our studies demonstrate specific temporal and spatial requirements of NFAT signaling for coronary vessel angiogenesis. These requirements are distinct from the roles of NFAT signaling in the angiogenesis of peripheral somatic vessels, providing an example of the environmental influence of different vascular beds on the in vivo endothelial responses to angiogenic stimuli.
No takes yet. Share an insight, caveat, or question.
Zeini et al. (2009) studied Coronary vessel development. Cyclosporin A (CsA) or calcineurin deletion vs. Control (implied) was evaluated on Coronary angiogenesis / vessel formation. Disruption of calcineurin-NFAT signaling in endothelial cells via cyclosporin A or genetic deletion resulted in the failure of coronary angiogenesis between embryonic days 10.5 and 11.5.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: