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Updated: May 24, 2026

In Vitro Model of Coronary Angiogenesis
Published on: March 10, 2020
Endothelium derived nitric oxide synthase negatively regulates the PDGF-survivin pathway during flow-dependent
Jun Yu1, Yuanyuan Zhang, Xinbo Zhang
1Vascular Biology and Therapeutics Program, Yale University School of Medicine, New Haven, Connecticut, United States of America. jun.yu@yale.edu
Abstract:
Chronic alterations in blood flow initiate structural changes in vessel lumen caliber to normalize shear stress. The loss of endothelial derived nitric oxide synthase (eNOS) in mice promotes abnormal flow dependent vascular remodeling, thus uncoupling mechanotransduction from adaptive vascular remodeling. However, the mechanisms of how the loss of eNOS promotes abnormal remodeling are not known. Here we show that abnormal flow-dependent remodeling in eNOS knockout mice (eNOS (-/-)) is associated with activation of the platelet derived growth factor (PDGF) signaling pathway leading to the induction of the inhibitor of apoptosis, survivin. Interfering with PDGF signaling or survivin function corrects the abnormal remodeling seen in eNOS (-/-) mice. Moreover, nitric oxide (NO) negatively regulates PDGF driven survivin expression and cellular proliferation in cultured vascular smooth muscle cells. Collectively, our data suggests that eNOS negatively regulates the PDGF-survivin axis to maintain proportional flow-dependent luminal remodeling and vascular quiescence.
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