Latrophilin-2 mediates fluid shear stress mechanotransduction at endothelial junctions

Author:

Tanaka KeiichiroORCID,Chen Minghao,Prendergast Andrew,Zhuang Zhenwu,Nasiri Ali,Joshi Divyesh,Hintzen Jared,Chung Minhwan,Kumar Abhishek,Mani Arya,Koleske Anthony,Crawford Jason,Nicoli Stefania,Schwartz Martin A.

Abstract

AbstractEndothelial cell responses to fluid shear stress from blood flow are crucial for vascular development, function and disease. A complex of PECAM-1, VE-cadherin, VEGF receptors (VEGFRs) and PlexinD1 located at cell-cell junctions mediates many of these events. But available evidence suggests that another mechanosensor upstream of PECAM-1 initiates signaling. Hypothesizing that GPCR and Gα proteins may serve this role, we performed siRNA screening of Gα subunits and found that Gαi2 and Gαq/11 are required for activation of the junctional complex. We then developed a new activation assay, which showed that these G proteins are activated by flow. We next mapped the Gα residues required for activation and developed an affinity purification method that used this information to identify latrophilin-2 (Lphn-2/ADGRL2) as the upstream GPCR. Latrophilin-2 is required for all PECAM-1 downstream events tested. In both mice and zebrafish, latrophilin-2 is required for flow-dependent angiogenesis and artery remodeling. Furthermore, endothelial specific knockout demonstrates that latrophilin plays a role in flow-dependent artery remodeling. Human genetic data reveal a correlation between the latrophilin-2-encodingAdgrl2gene and cardiovascular disease. Together, these results define a pathway that connects latrophilin-dependent G protein activation to subsequent endothelial signaling, vascular physiology and disease.

Publisher

Cold Spring Harbor Laboratory

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