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Publication : Blood flow patterns switch VEGFR2 activity through differential S-nitrosylation and S-oxidation.

First Author  Kang DH Year  2023
Journal  Cell Rep Volume  42
Issue  11 Pages  113361
PubMed ID  37910508 Mgi Jnum  J:358404
Mgi Id  MGI:7563772 Doi  10.1016/j.celrep.2023.113361
Citation  Kang DH, et al. (2023) Blood flow patterns switch VEGFR2 activity through differential S-nitrosylation and S-oxidation. Cell Rep 42(11):113361
abstractText  Vascular endothelial growth factor receptor-2 (VEGFR2) plays a key role in maintaining vascular endothelial homeostasis. Here, we show that blood flows determine activation and inactivation of VEGFR2 through selective cysteine modifications. VEGFR2 activation is regulated by reversible oxidation at Cys(1206) residue. H(2)O(2)-mediated VEGFR2 oxidation is induced by oscillatory flow in vascular endothelial cells through the induction of NADPH oxidase-4 expression. In contrast, laminar flow induces the expression of endothelial nitric oxide synthase and results in the S-nitrosylation of VEGFR2 at Cys(1206), which counteracts the oxidative inactivation. The shear stress model study reveals that disturbed blood flow operated by partial ligation in the carotid arteries induces endothelial damage and intimal hyperplasia in control mice but not in knock-in mice harboring the oxidation-resistant mutant (C1206S) of VEGFR2. Thus, our findings reveal that flow-dependent redox regulation of the VEGFR2 kinase is critical for the structural and functional integrity of the arterial endothelium.
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