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Publication : Vimentin regulates Notch signaling strength and arterial remodeling in response to hemodynamic stress.

First Author  van Engeland NCA Year  2019
Journal  Sci Rep Volume  9
Issue  1 Pages  12415
PubMed ID  31455807 Mgi Jnum  J:284277
Mgi Id  MGI:6387294 Doi  10.1038/s41598-019-48218-w
Citation  van Engeland NCA, et al. (2019) Vimentin regulates Notch signaling strength and arterial remodeling in response to hemodynamic stress. Sci Rep 9(1):12415
abstractText  The intermediate filament (IF) cytoskeleton has been proposed to regulate morphogenic processes by integrating the cell fate signaling machinery with mechanical cues. Signaling between endothelial cells (ECs) and vascular smooth muscle cells (VSMCs) through the Notch pathway regulates arterial remodeling in response to changes in blood flow. Here we show that the IF-protein vimentin regulates Notch signaling strength and arterial remodeling in response to hemodynamic forces. Vimentin is important for Notch transactivation by ECs and vimentin knockout mice (VimKO) display disrupted VSMC differentiation and adverse remodeling in aortic explants and in vivo. Shear stress increases Jagged1 levels and Notch activation in a vimentin-dependent manner. Shear stress induces phosphorylation of vimentin at serine 38 and phosphorylated vimentin interacts with Jagged1 and increases Notch activation potential. Reduced Jagged1-Notch transactivation strength disrupts lateral signal induction through the arterial wall leading to adverse remodeling. Taken together we demonstrate that vimentin forms a central part of a mechanochemical transduction pathway that regulates multilayer communication and structural homeostasis of the arterial wall.
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