bioRxiv · 10.1101/2025.07.01.662676
Latrophilin mediates flow activation of Notch to control vascular endothelial phenotype and atherosclerosis
Abstract
Fluid shear stress (FSS) is a major determinant of endothelial cell (EC) phenotype, with physio-logical laminar FSS promoting arterial identity and stability, and disturbed FSS promoting atherosclerosis. We previously identified the adhesion G protein-coupled receptor (GPCR) Latrophilin-2 (LPHN2) as a junctional protein required for FSS activation of the PECAM1/VE-cadherin/VEGFR2/PlexinD1 junctional mechanosensory pathway, which regulates EC alignment to laminar blood flow and promotes EC inflammatory activation and atherogenesis under disturbed flow. Here, we demonstrate that Lphn2 endothelial cell-specific knockout hyperlipidemic mice develop larger atherosclerotic plaques than controls--opposite from the previously reported Pecam1 knockout model. Transcriptomic analysis revealed that LPHN2 contributes more than half of flow-responsive gene expression and suppresses pro-inflammatory pathways. Critically, LPHN2 is essential for FSS-induced Notch1 activation to suppress inflammation, via a GPCR-independent mechanism. Active Notch correlates with physical association of LPHN2 with Notch1 activator, {gamma}-secretase, and Notch1 in response to flow. Both the Notch1 intracellular domain (NICD) and transmembrane domain (NTMD) contribute to the anti-inflammatory gene program, with the non-canonical NTMD signaling specifically suppressing the pro-inflammatory YAP pathway. Together with the accompanying paper showing that LPHN2 also mediates flow activation of the Smad1/5 pathway, these data identify LPHN2 as a central mediator of EC flow responses through multiple independent mechanisms in vascular biology and disease.
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Tanaka, K., Chen, M., Chanduri, M. V., Zhang, H., Fernandez-Hernando, C., Schwartz, M. A.. 2025-07-02. Latrophilin mediates flow activation of Notch to control vascular endothelial phenotype and atherosclerosis. https://doi.org/10.1101/2025.07.01.662676
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